AC Tune Up Near Me

AC Service Near Me: Specialist Air Conditioning Service Ensures Your Home Remains Cool And Comfortable Throughout Hot Days

Types of A/c Repair Provider

Ever had your air conditioner sputter to a halt just as the summertime sun peaks? It's a discouraging circumstance-- one that makes you recognize the number of parts must work in consistency for cool air to circulation. From frozen coils to refrigerant leakages, the difficulties differ, however the services don't have to be a secret.

Typical AC Repair Work Categories

  • Refrigerant Recharge and Leakage Repair: Without the correct amount of refrigerant, your system struggles to cool your space. Determining leaks is important to bring back efficiency.
  • Compressor and Fan Motor Repairs: These components are the heart and lungs of your a/c. When they fail, air flow and cooling capability plunge.
  • Thermostat Calibration and Replacement: In some cases the culprit is your thermostat sending out blended signals-- changing or swapping it out brings comfort back on track.
  • Electrical Component Repair Work: Faulty electrical wiring or capacitors interrupt efficiency, often causing unforeseen shutdowns or erratic behavior.
  • Drain Line Cleaning and Repair Work: Clogged condensate lines can trigger water damage and system shutdowns if ignored.

How Bold City Heating and Air Manages These Difficulties

Picture strolling into your home after a blistering day, greeted by an oasis of cool air. Bold City Heating and Air transforms that dream into truth by mastering every element of air conditioner repair work. They do not just spot leakages or swap parts-- they diagnose the source with surgical accuracy.

Frozen coils? They thaw the issue and avoid future freeze-ups. Electrical glitches? They trace every wire to make sure stability and security. Thermostat troubles? They fine-tune settings for best environment control. No problem is too tangled, no breakdown too obscure.

What sets Bold City apart is their commitment to thoroughness. Each repair unfolds like a carefully choreographed dance, ensuring your system runs smoothly, efficiently, and quietly. It's not just about repairing what's broken; it has to do with restoring assurance and cool convenience, all while extending the life of your unit.

Deciphering the Mysteries of Air Conditioner Malfunctions

Think of stepping into your home after a scorching day, only to be welcomed by a wave of warm, stagnant air. That sinking sensation? It generally indicates your a/c system is struggling. Among the myriad of missteps, refrigerant leakages typically play the bad guy. Not just do they sap the cooling power, however they silently erode effectiveness, leaving your energy costs to balloon. Have you ever questioned why your air conditioner cycles on and off so often? This phenomenon, referred to as brief cycling, could be the system's desperate cry for help due to unclean filters or malfunctioning thermostat calibration.

Expert Insights: Decoding the Signs

Bold City Heating and Air recognizes how frustrating it can be when your system refuses to blow cold air or, even worse, floods your home with unforeseen moisture. Their service technicians approach each issue with a detective's precision. For instance, clogged condensate drains frequently masquerade as small annoyances however can cause water damage if ignored.

Idea Only Pros Share

  • Frequently examine and clean your evaporator coil; dust buildup can minimize cooling effectiveness by as much as 30%.
  • Ensure your thermostat is positioned far from direct sunshine or heat-emitting appliances to prevent false readings.
  • Listen for unusual noises like rattling or hissing-- these frequently precede compressor or refrigerant issues.
  • Look for ice formation on coils; it indicates air flow limitation and demands immediate attention.

Typical Issues and Their Treatments

Problem Possible Cause Quick Repair
Warm Air Blowing Refrigerant leak or filthy filter Seal leaks and change filters
Brief Cycling Thermostat or electrical problems Recalibrate thermostat and check circuitry
Water Leak Obstructed condensate drain Clear the drain pipeline
Uncommon Noises Loose parts or compressor problems Tighten up parts or service compressor

Important Instruments for Diagnosing Air Conditioning Troubles

Ever tried fixing an ac system with just a screwdriver and a prayer? The reality is much more technical. The heart of reliable air conditioning repair work depend on the accuracy of the tools wielded. A manifold gauge set, for example, isn't simply an elegant gizmo; it's the mechanic's stethoscope, exposing the surprise pressures within the system's veins. Without it, guessing the refrigerant levels is like reading tea leaves.

Bold City Heating and Air understands how crucial these subtle readings are. They approach each unit with a toolkit that's not just detailed however diligently adjusted, ensuring every twist, turn, and valve modification hits the mark. Their understanding of the subtleties in pressure fluctuations and temperature gradients changes a job from uncertainty to science.

Tools That Transform Repair into Art

  • Digital Multimeter: Measures voltage, present, and resistance. Identifies electrical faults that can silently undermine your a/c unit.
  • Thermometer: Important for pinpointing temperature differentials across coils, suggesting airflow or refrigerant issues.
  • Drip Detectors: Using UV dye or electronic sensors, these unveil the invisible leakages that drain pipes efficiency.
  • Vacuum Pumps: Evacuate moisture and air, vital in preparing the system for a flawless recharge.

In my experience, even the smallest ignored information-- like a somewhat used out gasket-- can cascade into a system-wide ineffectiveness - Bold City Heating and Air. Strong City's professionals do not simply repair; they anticipate the subtle whispers of wear and tear before they yell out as breakdowns

Insider Tips from the Field

  1. Constantly double-check manifold gauge readings at different times of the day; ambient temperature level shifts can impact accuracy.
  2. Use a microamp clamp meter to identify faint electrical draws that recommend failing capacitors or motors.
  3. When leaving a system, expect the "hunting" effect in the vacuum gauge, a professional clue showing trapped wetness.

Tools are only as good as the hands that wield them. Bold City Heating and Air's mastery of their instruments raises cooling repair work from a mere service to a carefully tuned craft.

Essential Safety Procedures for AC Repair

Electrical threats prowl in every corner of a/c repair, particularly when handling capacitors holding residual charge. Have you ever questioned why a sudden jolt can amaze even seasoned specialists? It's because a charged capacitor can save dangerous energy long after the unit is powered down. That's why Bold City Heating and Air demands rigorous discharge procedures before touching any elements.

Working around refrigerants requires not just accuracy however likewise alertness. Leakages can quietly poison the air or trigger frostbite on contact. When tackling these unnoticeable dangers, protective gear isn't optional-- it's a lifeline. They understand that fumbling without appropriate gloves and goggles belongs to dancing with threat.

For those venturing into do it yourself repairs, observe these expert suggestions:

  • Always cut power at the breaker panel before opening the unit.
  • Use a multimeter to confirm zero voltage before proceeding.
  • Use insulated gloves and eye security to protect against electrical shock and refrigerant exposure.
  • Manage refrigerant lines with care-- prevent leaks or sharp bends that can lead to leaks.
  • Keep a fire extinguisher rated for electrical fires nearby.

Imagine the horror of an abrupt trigger in a dirty, enclosed area-- fires ignite in the blink of an eye. Bold City Heating and Air's professionals utilize careful cleaning regimens to eliminate dust build-up that may otherwise sustain unexpected combustion.

Security Checklist Before Starting Repairs

Safety Action Why It Matters
Power Seclusion Avoids accidental electrocution and devices damage
Capacitor Discharge Eliminates stored electrical energy that can cause shocks
Protective Equipment Usage Shields skin and eyes from refrigerants and particles
Leak Detection Ensures air quality and prevents refrigerant loss
Workspace Ventilation Lowers inhalation threats and dissipates flammable gases

In the world of air conditioning repair, rushing through security checks is like skipping steps on a high wire-- one mistake can cascade into catastrophe. Bold City Heating and Air's commitment to these precautions transforms a dangerous endeavor into a controlled, predictable operation. They remain alert, understanding that true mastery in a/c repair is as much about protecting lives as it is about bring back convenience.

Cooling Solutions in Jacksonville, FL

Jacksonville, FL is a vibrant city understood for its extensive park system, gorgeous beaches, and growing arts scene. As the biggest city by area in the continental United States, it provides residents and visitors lots of outside activities, including boating along the St - Bold City Heating and Air. Johns River and exploring the Jacksonville Zoo and Gardens. The city's warm environment makes efficient a/c essential for comfort and health throughout the year

For those in requirement of air conditioning services, Bold City Heating and Air offers skilled assistance and complimentary consultations to assist guarantee your home or company stays cool and comfy. Connect to them for reliable recommendations and options on a/c repair work tailored to your requirements.

  1. 32206: 32206 is a zip code encompassing a diverse area of Jacksonville FL. It comprises Arlington, recognized for its mid-century architecture and easy entry to downtown.
  2. 32207: 32207 is a zip code encompassing sections of Jacksonville's Southside, recognized for its mix of residential areas and commercial developments. It includes diverse neighborhoods and easy access to major roadways. Jacksonville FL
  3. 32208: 32208 is a zip code covering parts of Jacksonville FL's Southside, known for its combination of residential areas and business hubs. It includes famous spots like the Avenues Mall and adjacent business parks.
  4. 32209: 32209 is a zip code including portions of Arlington, a large and varied housing district in Jacksonville FL. It provides a mix of accommodation options, parks, and easy access to city center.
  5. 32210: 32210 is a lively neighborhood in Jacksonville FL, known for its blend of residential areas and businesses. It gives a handy location with easy access to major roadways and area resources.
  6. 32211: 32211 is a zip code primarily including the Arlington district of Jacksonville FL. It's a large residential area with a blend of housing options, retail businesses, and parks.
  7. 32099: 32099 encompasses Ponte Vedra Beach, a shoreline community known for its luxury homes and golf courses. It features stunning beaches and a relaxed, resort style atmosphere.
  8. 32201: 32201 is a city center Jacksonville FL postal code encompassing the city center. It includes landmarks such as the Jacksonville Landing and historical buildings.
  9. 32202: 32202 is a dynamic neighborhood in Jacksonville FL, known for its historical charm and eclectic community. It provides a mix of housing, local businesses, and attractions.
  10. 32203: 32203 is a zip code encompassing a large part of Jacksonville FL's city center district and surrounding communities. It includes several historic buildings, businesses, and housing areas beside the St. Johns River.
  11. 32204: 32204 is a zip code encompassing the neighborhood of Ortega in Jacksonville FL. It's a rich and historic area known because of its shoreline properties and oak-lined streets.
  12. 32205: 32205 is a zip code covering a big part of Jacksonville FL's urban core, including the historical Riverside and Avondale neighborhoods. Recognized for its dynamic arts scene, varied architecture, and pedestrian-friendly streets, 32205 provides a blend of housing, commercial, and recreational spaces.
  13. 32212: The 32212 area code is a zip code encompassing parts of Jacksonville FL's Southside, known for its blend of residential areas and business districts. It offers a range of homes, shopping, and restaurants.
  14. 32214: This ZIP code is a zip code encompassing parts of Jacksonville's Southside, recognized for its mix of residential areas and commercial developments. It provides a blend of suburban living with easy access to shopping, dining, and major roadways.
  15. 32215: 32215 is a zip code including a few neighborhoods in Jacksonville FL's Southside area. It is known as a blend of housing sections, commercial centers, and proximity to important roads.
  16. 32216: That ZIP code is a zip code including parts of Jacksonville's Southside, recognized for its mix of residential zones and commercial developments. It provides a suburban vibe with easy access to shopping, dining, and major roadways.
  17. 32217: 32217 is a zip code covering a big part of Mandarin, a suburb in Jacksonville FL famous for its scenic waterfront views. It features a blend of residential areas, parks, and business developments along the St. Johns River.
  18. 32218: 32218 is a zip code encompassing parts of the Southside neighborhood in Jacksonville FL. It's a mainly residential section with a combination of apartments, condos, and single-family houses.
  19. 32227: The 32227 zip code includes the Jacksonville Beach area, offering a combination of housing neighborhoods and beachfront attractions. It is recognized for its calm coastal lifestyle and popular surfing spots. Jacksonville FL
  20. 32228: 32228 is a zip code encompassing the Jacksonville FL region. It's recognized for its sandy shores, lively boardwalk, and oceanfront leisure pursuits.
  21. 32229: 32229 is a postal code including the Arlington district of Jacksonville FL. It's a big residential and business area situated east of the St. Johns River.
  22. 32235: 32235 is a zip code primarily covering the Arlington area of Jacksonville FL. It's a big residential area with a combination of homes, retail, and commercial businesses.
  23. 32236: 32236 is a zip code covering the Oceanway and New Berlin neighborhoods in Jacksonville FL. It's a largely housing area known for its suburban character and proximity to the Jacksonville International Airport.
  24. 32237: That ZIP code is a zip code covering a part of Jacksonville's Southside area. It is known for a blend of residential neighborhoods, commercial centers, and proximity to the University of North Florida.
  25. 32238: 32238 is a zip code covering sections of Jacksonville FL's Southside, known for its mix of housing and business expansions. It includes well-known shopping malls, office parks, and diverse housing options.
  26. 32239: 32239 is a zip code encompassing the Kernan area of Jacksonville FL. It is a developing residential area with a variety of housing options and handy access to amenities.
  27. 32240: 32240 is a zip code encompassing the Argyle Forest neighborhood in Jacksonville FL. This region is known for its family-friendly atmosphere and residential development.
  28. 32241: 32241 is a Jacksonville FL zip code covering the Southside Estates neighborhood. It's a mainly residential area with a mix of housing choices and convenient access to major highways.
  29. 32244: 32244 is a zip code encompassing the Jacksonville Beaches region. It includes Neptune Beach, Atlantic Beach, and some of Jacksonville Beach.
  30. 32219: 32219 is a zip code associated with the Mandarin area in Jacksonville FL. It's a large residential area known for its blend of long-standing communities and more recent developments.
  31. 32220: 32220 is a zip code encompassing the Argyle Forest neighborhood in Jacksonville FL. This is a mainly residential area recognized for its family-friendly atmosphere and convenient access to shopping and dining.
  32. 32221: The 32221 is a zip code encompassing parts of Jacksonville's Southside, known for its mix of housing developments and business parks. It includes neighborhoods like Baymeadows and Deerwood, offering a range of housing and retail selections.
  33. 32222: That zip code in Jacksonville, FL covers the Beach Haven and South Beach sections. This area is known for its closeness to the shore and residential areas.
  34. 32223: 32223 is a zip code including the Mandarin neighborhood of Jacksonville FL. It is a large residential location famous for its past, parks, and closeness to the St. Johns River.
  35. 32224: 32224 is a zip code encompassing Jacksonville Beach, a shoreline community known for its grainy shores. Locals and tourists same enjoy riding waves, fishing, and a vibrant promenade scene in Jacksonville FL.
  36. 32225: 32225 is a zip code covering Jacksonville FL's Southside area, recognized because of its mix of housing areas, business centers, and closeness to the St. Johns River. It offers a mixture of outskirts living with convenient entry to shopping, restaurants, and leisure activities.
  37. 32226: 32226 is a zip code covering the Southside neighborhood of Jacksonville FL. It is a large, varied area known for its business hubs, residential communities, and proximity to the St. Johns River.
  38. 32230: 32230 is a zip code covering the Jacksonville FL neighborhoods of Arlington and Fort Caroline. This location offers a combination of housing developments, parks, and historical sites.
  39. 32231: 32231 is the zip code for Mandarin, a big suburban community in Jacksonville FL known for its history and scenic views along the St. Johns River. It offers a combination of housing developments, parks, and business districts.
  40. 32232: 32232 is the zip code of the Kernan area of Jacksonville FL. It is a growing suburban area recognized because of its housing neighborhoods and closeness to the beach.
  41. 32234: 32234 is the zip code for the Mandarin community in Jacksonville FL. It is a big housing location known for its past, parks, and proximity to the St. Johns River.
  42. 32245: 32245 is a zip code encompassing several neighborhoods in Jacksonville FL, such as the affluent Deerwood area recognized for its gated communities and the large St. Johns Town Center shopping and dining destination. Residents can appreciate a mix of upscale living, retail convenience, and proximity to major roadways.
  43. 32246: 32246 is a zip code encompassing the Hodges Boulevard area in Jacksonville FL. It's a primarily residential area with a mix of housing options and business projects.
  44. 32247: 32247 is a zip code covering the Mandarin area in Jacksonville FL. It's a large suburban location famous for its historical roots, riverfront scenery, and welcoming environment.
  45. 32250: The 32250 is a zip code encompassing a portion of Jacksonville's in FL Southside, known by its mix of residential areas and business expansions. It includes parts of the Baymeadows area, offering a range of housing options and easy entry to shopping and dining.
  46. 32254: 32254 is a zip code encompassing parts of Jacksonville's Southside, known for its mix of residential areas and business developments. It contains the popular Deerwood Park and Tinseltown areas.
  47. 32255: 32255 is a zip code including multiple areas in Jacksonville FL's south side area. It features a mix of housing neighborhoods, commercial centers, and proximity to main highways.
  48. 32256: 32256 is a zip code including parts of the South Side area in Jacksonville FL. It offers a blend of residential areas, commercial centers, and entertainment options.
  49. 32257: 32257 is a zip code encompassing the Kernan and Hodges Boulevards region of Jacksonville FL. This area is recognized for its housing neighborhoods, shopping centers, and proximity to the University of North Florida.
  50. 32258: 32258 is a zip code covering parts of Jacksonville FL's south side, recognized for residential sections and business projects. It includes communities like Baymeadow and Deer Wood, offering a blend of housing choices and convenient access to purchasing and dining.
  51. 32260: That zip code is a zip code encompassing Jacksonville FL's Southside neighborhood. It includes a blend of housing, business properties, and closeness to the St. Johns River.
  52. 32277: 32277 is the zip code for Jacksonville FL, a shoreline community known for its sandy shores and vibrant boardwalk. It provides a combination of residential areas, hotels, restaurants, and recreational pursuits.
Downtown JacksonvilleDowntown Jacksonville serves as the main business district of Jacksonville, Florida, known for its dynamic mix of heritage architecture and modern skyscrapers. It features artistic venues, riverside parks, and a range of dining and entertainment options.https://en.wikipedia.org/wiki/Downtown_Jacksonville
SouthsideSouthside is a vibrant district in Jacksonville, FL, known for its blend of neighborhoods, malls, and business districts. It offers a blend of urban convenience and suburban ease, making it a well-liked area for residents and professionals.https://en.wikipedia.org/wiki/Southside,_Jacksonville
NorthsideNorthside is a extensive district in Jacksonville, FL, known for its varied communities and factory areas. It features a blend of residential neighborhoods, parks, and commercial zones, aiding the city's growth and development.https://en.wikipedia.org/wiki/Northside,_Jacksonville
WestsideWestside is a dynamic district in Jacksonville, FL, known for its diverse community and deep cultural heritage. It features a mix of residential areas, local businesses, and parks, offering a distinctive blend of city and suburban life.https://en.wikipedia.org/wiki/Westside_(Jacksonville)
ArlingtonArlington is a vibrant district in Jacksonville, FL, known for its blend of residential neighborhoods and business districts. It features parks, malls, and access to the St. Johns River, making it a popular area for households and outdoor activities fans.https://en.wikipedia.org/wiki/Arlington,_Jacksonville
MandarinMandarin stands as a historic area in Jacksonville, Florida, known for its picturesque riverfront views and quaint small-town atmosphere. It features lush parks, local shops, and a deep cultural heritage dating back to the 19th century.https://en.wikipedia.org/wiki/Mandarin,_Jacksonville
San MarcoSan Marco is a lively neighborhood in Jacksonville, FL, known for its historic architecture and quaint town center. It offers a mix of specialty shops, restaurants, and cultural attractions, making it a favored destination for residents and visitors alike.https://en.wikipedia.org/wiki/San_Marco,_Jacksonville
RiversideRiverside is a dynamic area in Jacksonville, FL, known for its historic architecture and flourishing arts scene. It offers a variety of distinctive shops, restaurants, and picturesque riverfront parks, making it a well-liked destination for residents and visitors alike.https://en.wikipedia.org/wiki/Riverside_and_Avondale
AvondaleAvondale is a appealing neighborhood in Jacksonville, FL, known for its heritage architecture and lively local shops. It offers a combination of residential areas, trendy restaurants, and cultural attractions along the St. Johns River.https://en.wikipedia.org/wiki/Avondale_and_Riverside
OrtegaOrtega is a historic and beautiful neighborhood in Jacksonville, FL, known for its attractive waterfront homes and leafy streets. It offers a delightful blend of classic Southern architecture and modern amenities, making it a sought-after residential area.https://en.wikipedia.org/wiki/Ortega,_Jacksonville
Murray HillMurray Hill is a vibrant historic neighborhood in Jacksonville, FL, known for its quaint bungalows and unique local businesses. It offers a blend of housing comfort and a lively arts and dining scene, making it a popular destination for residents and visitors alike.https://en.wikipedia.org/wiki/Murray_Hill,_Jacksonville
SpringfieldSpringfield is a historic neighborhood in Jacksonville, FL, known for its quaint early 20th-century architecture and dynamic community. It features a mix of residential homes, local businesses, and cultural attractions, making it a popular area for both residents and visitors.https://en.wikipedia.org/wiki/Springfield,_Jacksonville
East ArlingtonEast Arlington is a dynamic neighborhood in Jacksonville, FL, known for its mixed community and easy access to retail and recreational areas. It features a blend of residential homes, parks, and shops, making it a attractive place to live.https://en.wikipedia.org/wiki/Arlington,_Jacksonville
Fort CarolineFort Caroline is a heritage district in Jacksonville, FL, known for its deep colonial history and proximity to the site of the 16th-century French fort. It includes a blend of residential areas, parks, and cultural landmarks that showcase its heritage.https://en.wikipedia.org/wiki/Fort_Caroline
Greater ArlingtonGreater Arlington in Jacksonville, FL, is a vibrant district known for its neighborhoods, shopping centers, and parks. It offers a mix of suburban lifestyle with convenient access to downtown Jacksonville and beach areas.https://en.wikipedia.org/wiki/Arlington,_Jacksonville
Intracoastal WestIntracoastal West is a lively neighborhood in Jacksonville, FL, known for its beautiful waterways and being near the Intracoastal Waterway. It offers a mix of living and commercial spaces, providing a distinct combination of metropolitan ease and outdoor appeal.https://en.wikipedia.org/wiki/Jacksonville%27s_Intracoastal_West_and_Southside
Jacksonville BeachesJacksonville Beaches stands as a vibrant coastal locale in Jacksonville, FL, famous for its stunning sandy shores and laid-back atmosphere. It offers a combination of living communities, local shops, and leisure activities along the Atlantic Ocean.https://en.wikipedia.org/wiki/Jacksonville_Beaches,_Florida
Neptune BeachNeptune Beach is a pleasant beachside community located in Jacksonville, Florida, known for its stunning beaches and calm atmosphere. It offers a combination of residential neighborhoods, local shops, and dining options, making it a well-liked destination for both residents and visitors.https://en.wikipedia.org/wiki/Neptune_Beach,_Florida
Atlantic BeachAtlantic Beach is a seaside community located in Jacksonville, Florida, known for its beautiful beaches and laid-back atmosphere. It offers a combination of residential areas, local shops, and outdoor recreational activities along the Atlantic Ocean.https://en.wikipedia.org/wiki/Atlantic_Beach,_Florida
Jackson BeachJacksonville Beach is a lively seaside community in Jacksonville, FL, known for its beautiful beaches and lively boardwalk. It offers a blend of residential neighborhoods, local shops, restaurants, and recreational activities, making it a popular destination for both residents and visitors.https://en.wikipedia.org/wiki/Jacksonville_Beaches,_Florida
BaldwinBaldwin is a small locale located within Duval County, near Jacksonville FL, FL, known for its traditional charm and tight-knit community. It features a combination of neighborhoods, local businesses, and scenic parks, offering a peaceful, suburban atmosphere.https://en.wikipedia.org/wiki/Baldwin,_Florida
OceanwayOceanway is a housing neighborhood in Jacksonville, Florida, known for its suburban atmosphere and kid-friendly amenities. It features a variety of housing options, parks, and local businesses, making it a popular area for residents seeking a community-oriented environment.https://en.wikipedia.org/wiki/Jacksonville,_Florida
South JacksonvilleSouth Jacksonville is a dynamic district in Jacksonville, FL, known for its housing areas and local shops. It offers a combination of old-world charm and modern amenities, making it a favored area for families and career people.https://en.wikipedia.org/wiki/South_Jacksonville,_Florida
DeerwoodDeerwood is a well-known neighborhood in Jacksonville, FL, known for its high-end residential communities and beautiful green spaces. It offers a mix of elegant homes, golf courses, and quick access to shopping and dining options.https://en.wikipedia.org/wiki/Deerwood,_Jacksonville
BaymeadowsBaymeadows is a dynamic district in Jacksonville, FL, known for its blend of residential neighborhoods and commercial areas. It offers a selection of shopping, dining, and recreational options, making it a well-liked destination for locals and visitors alike.https://en.wikipedia.org/wiki/Jacksonville,_Florida
Bartram ParkBartram Park is a dynamic neighborhood in Jacksonville, FL, known for its modern residential communities and closeness to nature. It offers a mix of urban amenities and outdoor recreational activities, making it a well-liked choice for families and professionals.https://en.wikipedia.org/wiki/Jacksonville,_Florida
NocateeNocatee is a master-planned community located near Jacksonville, FL, known for its welcoming atmosphere and wide-ranging amenities. It features parks, trails, and recreational facilities, making it a preferred choice for residents seeking a lively suburban lifestyle.https://en.wikipedia.org/wiki/Nocatee,_Florida
BrooklynBrooklyn is a lively district in Jacksonville, FL, known for its historic charm and tight-knit community. It offers a blend of houses, local businesses, and historic sites that highlight the area's deep history.https://en.wikipedia.org/wiki/Brooklyn,_Jacksonville
LaVillaLaVilla is a historical neighborhood in Jacksonville FL, recognized for its rich heritage heritage and vibrant arts environment. Formerly a thriving African American society, it played a significant part in the city's music and entertainment past.https://en.wikipedia.org/wiki/LaVilla,_Jacksonville
DurkeevilleDurkeeville is a historic in Jacksonville, Florida, known for its rich African American heritage and dynamic community. It features a variety of residential areas, local businesses, and cultural landmarks that showcase its deep roots in the city's history.https://en.wikipedia.org/wiki/Durkeeville,_Jacksonville
FairfaxFairfax is a lively neighborhood in Jacksonville, FL, known for its historic charm and close-knit community. It features a mix of residential homes, shops, and parks, offering a inviting atmosphere for locals and visitors alike.https://en.wikipedia.org/wiki/Neighborhoods_of_Jacksonville
LackawannaLackawanna is a living neighborhood in Jacksonville, Florida, known for its peaceful streets and community atmosphere. It features a mix of private residences and neighborhood shops, contributing to its close-knit atmosphere within the city.https://en.wikipedia.org/wiki/Neighborhoods_of_Jacksonville
New TownNew Town is a noted neighborhood in Jacksonville, FL, famous for its vibrant community spirit and vast cultural heritage. It includes a combination of residential areas, local businesses, and community organizations working to improve and improve the district.https://en.wikipedia.org/wiki/Neighborhoods_of_Jacksonville
Panama ParkPanama Park is a housing neighborhood in Jacksonville, FL, known for its calm streets and neighborly atmosphere. It offers simple access to local facilities and parks, making it an attractive area for families and working individuals.https://en.wikipedia.org/wiki/Jacksonville,_Florida
TalleyrandTalleyrand is a historic neighborhood in Jacksonville, Florida, known for its housing charm and proximity to the St. Johns River. The area includes a mix of traditional homes and local businesses, reflecting its rich community heritage.https://en.wikipedia.org/wiki/Neighborhoods_of_Jacksonville
DinsmoreDinsmore is a living neighborhood located in Jacksonville, Florida, known for its quiet streets and friendly atmosphere. It features a mix of single-family homes and local amenities, offering a neighborhood feel within the city.https://en.wikipedia.org/wiki/Jacksonville,_Florida
Garden CityGarden City is a lively neighborhood in Jacksonville, FL, known for its combination of houses and neighborhood shops. It offers a tight-knit community atmosphere with quick access to city amenities.https://en.wikipedia.org/wiki/Neighborhoods_of_Jacksonville
Grand ParkGrand Park is a vibrant neighborhood in Jacksonville, Florida, known for its historic charm and diverse community. It features shaded streets, local parks, and a selection of small businesses that contribute to its inviting atmosphere.https://en.wikipedia.org/wiki/Grand_Park,_Jacksonville
HighlandsHighlands is a vibrant neighborhood in Jacksonville, FL known for its charming residential streets and local parks. It offers a mix of historic homes and modern amenities, creating a friendly community atmosphere.https://en.wikipedia.org/wiki/Neighborhoods_of_Jacksonville
Lake ForestLake Forest is a housing neighborhood located in Jacksonville, Florida, known for its quiet streets and kid-friendly atmosphere. It features a mix of detached houses, parks, and local amenities, making it a appealing community for residents.https://en.wikipedia.org/wiki/Neighborhoods_of_Jacksonville
PaxonPaxon is a housing neighborhood located in the west part of Jacksonville, Florida, known for its mixed community and reasonably priced housing. It features a mix of detached houses and local businesses, contributing to its close-knit, suburban atmosphere.https://en.wikipedia.org/wiki/Jacksonville,_Florida
RibaultRibault is a vibrant neighborhood in Jacksonville, Florida, known for its multicultural community and homey feel. It features a mix of heritage homes and local businesses, contributing to its unique cultural identity.https://en.wikipedia.org/wiki/Fort_Caroline_National_Memorial
Sherwood ForestSherwood Forest is a living neighborhood in Jacksonville, FL, known for its leafy streets and family-friendly atmosphere. It features a blend of traditional and new homes, offering a peaceful suburban feel close to city amenities.https://en.wikipedia.org/wiki/Arlington,_Jacksonville
WhitehouseWhitehouse is a living neighborhood located in Jacksonville, Florida, known for its quiet streets and community-oriented atmosphere. It features a mix of individual residences and local amenities, making it a well-liked area for families and professionals.https://en.wikipedia.org/wiki/Neighborhoods_of_Jacksonville
Cedar HillsCedar Hills is a vibrant neighborhood in Jacksonville, FL, known for its varied community and convenient access to local amenities. It offers a blend of residential and commercial areas, enhancing its dynamic and welcoming environment.https://en.wikipedia.org/wiki/Neighborhoods_of_Jacksonville
Grove ParkGrove Park is a residential neighborhood in Jacksonville, Florida, known for its lovely vintage homes and canopied streets. It offers a close-knit community atmosphere with convenient access to downtown amenities and parks.https://en.wikipedia.org/wiki/Neighborhoods_of_Jacksonville
Holiday HillHoliday Hill is a residential neighborhood in Jacksonville, Florida, known for its peaceful streets and friendly community. It offers quick access to local parks, schools, and shopping centers, making it a attractive area for families.https://en.wikipedia.org/wiki/Neighborhoods_of_Jacksonville
Southwind LakesSouthwind Lakes is a residential neighborhood in Jacksonville, FL known for its serene lakes and well-maintained community spaces. It offers a quiet suburban atmosphere with easy access to local amenities and parks.https://en.wikipedia.org/wiki/Southside,_Jacksonville
Secret CoveSecret Cove is a tranquil waterfront neighborhood in Jacksonville, FL, known for its peaceful atmosphere and scenic views. It offers a mix of residential homes and natural landscapes, making it a well-liked spot for outdoor enthusiasts and families.https://en.wikipedia.org/wiki/Atlantic_Beach,_Florida
EnglewoodEnglewood is a dynamic neighborhood in Jacksonville, FL, known for its multicultural community and strong cultural heritage. It offers a mix of residential areas, local businesses, and recreational spaces, making it a lively part of the city.https://en.wikipedia.org/wiki/Neighborhoods_of_Jacksonville
St NicholasSt. Nicholas is a historic neighborhood in Jacksonville, Florida, known for its delightful early 20th-century architecture and lively community atmosphere. It offers a blend of residential homes, local businesses, and cultural landmarks, making it a special and inviting area within the city.https://en.wikipedia.org/wiki/St._Nicholas,_Jacksonville
San JoseSan Jose is a lively district in Jacksonville, FL, known for its living communities and commercial areas. It offers a combination of suburban living with close proximity to green spaces, retail options, and restaurants.https://en.wikipedia.org/wiki/Jacksonville,_Florida
Pickwick ParkPickwick Park is a living neighborhood in Jacksonville FL, known for its quiet streets and close-knit atmosphere. It includes a mix of single-family homes and local amenities, making it a appealing area for families and professionals.https://en.wikipedia.org/wiki/Jacksonville,_Florida
LakewoodLakewood is a dynamic neighborhood in Jacksonville, FL known for its heritage charm and varied community. It features a mix of residences, local businesses, and parks, offering a inviting atmosphere for residents and visitors alike.https://en.wikipedia.org/wiki/Neighborhoods_of_Jacksonville
GalwayGalway is a residential neighborhood in Jacksonville, FL, known for its residential atmosphere and neighborly living. It features a combination of single-family homes and local amenities, providing a peaceful and family-friendly environment.https://en.wikipedia.org/wiki/Galway,_Florida
BeauclercBeauclerc is a living neighborhood in Jacksonville FL, known for its peaceful streets and welcoming atmosphere. It offers a mix of single-family homes and local amenities, making it a popular choice for residents seeking a suburban feel within the city.https://en.wikipedia.org/wiki/Beauclerc,_Jacksonville
Goodby's CreekGoodby's Creek is a residential neighborhood in Jacksonville, FL, known for its tranquil atmosphere and proximity to the outdoors. It offers a mix of suburban living with convenient access to nearby amenities and parks.https://en.wikipedia.org/wiki/Neighborhoods_of_Jacksonville
LorettoLoretto is a historic neighborhood in Jacksonville, Florida, known for its quaint residential streets and close-knit community atmosphere. It features a combination of architectural styles and offers convenient access to downtown Jacksonville and nearby parks.https://en.wikipedia.org/wiki/Loretto,_Jacksonville
SheffieldSheffield is a residential neighborhood in Jacksonville, FL, known for its calm streets and community-oriented atmosphere. It features a combination of detached houses and local parks, making it a well-liked area for families.https://en.wikipedia.org/wiki/Sheffield,_Jacksonville
SunbeamSunbeam is a dynamic neighborhood in Jacksonville, FL, known for its appealing residential streets and robust community spirit. It offers a combination of historic homes and local businesses, creating a friendly atmosphere for residents and visitors alike.https://en.wikipedia.org/wiki/Jacksonville,_Florida
Killarney ShoresKillarney Shores is a housing neighborhood in Jacksonville FL, Florida, renowned for its quiet streets and close-knit community. It offers convenient access to nearby parks, schools, and shopping centers, making it a appealing area for families.https://en.wikipedia.org/wiki/Neighborhoods_of_Jacksonville
Royal LakesRoyal Lakes is a living neighborhood in Jacksonville, Florida, known for its serene environment and family-friendly atmosphere. It features well-kept homes, local parks, and convenient access to nearby schools and shopping centers.https://en.wikipedia.org/wiki/Neighborhoods_of_Jacksonville
Craig Industrial ParkCraig Industrial Park is a industrial and industrial area in Jacksonville, FL, known for its combination of storage facilities, production plants, and distribution centers. It serves as a important hub for local businesses and contributes greatly to the city's economy.https://en.wikipedia.org/wiki/Jacksonville,_Florida
EastportEastport is a vibrant neighborhood in Jacksonville, FL, known for its historic charm and waterfront views. It offers a blend of residential areas, local businesses, and recreational spaces along the St. Johns River.https://en.wikipedia.org/wiki/Eastport,_Jacksonville
Yellow BluffYellow Bluff is a living neighborhood in Jacksonville, Florida, known for its quiet streets and close-knit community. It offers a mix of residential homes and community amenities, providing a comfortable living environment.https://en.wikipedia.org/wiki/Northside,_Jacksonville#Yellow_Bluff
Normandy VillageNormandy Village is a residential community in Jacksonville, FL, recognized for its mid-20th-century houses and family-oriented setting. It offers easy access to nearby recreational areas, educational institutions, and malls, making it a preferred choice for residents.https://en.wikipedia.org/wiki/Arlington,_Jacksonville
Argyle ForestArgyle Forest is a residential area in Jacksonville, FL, famous for its family-oriented environment and close access to shopping and schools. It offers a mix of single-family homes, parks, and recreational facilities, making it a popular choice for living in the suburbs.https://en.wikipedia.org/wiki/Jacksonville,_Florida
Cecil Commerce CenterCecil Commerce Center is a extensive industrial and commercial district in Jacksonville FL, known for its strategic location and broad transportation infrastructure. It serves as a hub for logistics, manufacturing, and distribution businesses, playing a key role in the local economy.https://en.wikipedia.org/wiki/Cecil_Airport
VenetiaVenetia is a living neighborhood in Jacksonville, Florida, known for its calm streets and suburban atmosphere. It offers convenient access to nearby parks, schools, and shopping centers, making it a favored area for families.https://en.wikipedia.org/wiki/Venetia,_Jacksonville
Ortega ForestOrtega Forest is a charming residential neighborhood in Jacksonville, FL, known for its vintage homes and thick, tree-lined streets. It offers a calm suburban atmosphere while being quickly close to downtown Jacksonville.https://en.wikipedia.org/wiki/Jacksonville,_Florida
TimuquanaTimuquana is a residential neighborhood located in Jacksonville, Florida, known for its quiet streets and public parks. It offers a mix of single-family homes and easy access to local amenities and schools.https://en.wikipedia.org/wiki/Timuquana_Country_Club
San Jose ForestSan Jose Forest is a residential neighborhood located in Jacksonville, Florida, known for its verdant greenery and family-friendly atmosphere. The area features a combination of private residences and local parks, offering a quiet suburban environment.https://en.wikipedia.org/wiki/Neighborhoods_of_Jacksonville
E-TownE-Town is a lively neighborhood located in Jacksonville, Florida, known for its varied community and historic significance. It features a blend of residential areas, local businesses, and cultural landmarks that enhance its unique character.https://en.wikipedia.org/wiki/Jacksonville%27s_Southside
Cummer Museum of Art and GardensThe Cummer Museum of Art and Gardens exhibits a broad collection of art covering multiple times and cultures. Guests can also explore stunning formal gardens with views of the St. Johns River in Jacksonville FL.https://en.wikipedia.org/wiki/Cummer_Museum_of_Art_and_Gardens
Jacksonville Zoo and GardensJacksonville Zoo and Gardens showcases a diverse collection of animals and plants from across the world. It provides engaging displays, instructive programs, and conservation efforts for visitors of all years. Jacksonville FLhttps://en.wikipedia.org/wiki/Jacksonville_Zoo_and_Gardens
Museum of Science and HistoryThis Museum of Science & History in Jacksonville FL features hands-on exhibits and a planetarium appropriate for all ages. Visitors can explore science, history, and culture through interesting displays and informative programs.https://en.wikipedia.org/wiki/Museum_of_Science_and_History
Kingsley PlantationKingsley Plantation is a historic site that offers a glimpse into Florida's plantation history, encompassing the lives of enslaved people and the planter family. Visitors can investigate the grounds, including the slave quarters, plantation house, and barn. Jacksonville FLhttps://en.wikipedia.org/wiki/Kingsley_Plantation
Fort Caroline National MemorialFort Caroline National Memorial honors the 16th-century French endeavor to establish a colony in Florida. It provides exhibits and paths exploring the history and natural environment of the area in Jacksonville FL.https://en.wikipedia.org/wiki/Fort_Caroline_National_Memorial
Timucuan Ecological and Historic PreserveTimucuan Ecological and Historic Preserve protects one of the last unspoiled coastal wetlands on the Atlantic Coast. It maintains the history of the Timucuan Indians, European explorers, and plantation owners.https://en.wikipedia.org/wiki/Timucuan_Ecological_and_Historic_Preserve
Friendship FountainFriendship Fountain is a huge, iconic water fountain in Jacksonville FL. It showcases impressive water shows and lights, which makes it a well-liked site and meeting spot.https://en.wikipedia.org/wiki/Friendship_Fountain
Riverside Arts MarketRiverside Arts Market in Jacksonville FL, is a vibrant week-to-week arts and crafts market under the Fuller Warren Bridge. It showcases local artisans, on-stage music, food vendors, and a stunning view of the St. Johns River.https://en.wikipedia.org/wiki/Jacksonville_Landing
San Marco SquareSan Marco Square is a delightful shopping and eating district with a European-inspired ambiance. It is known for its exclusive boutiques, eateries, and the well-known fountain featuring lions. Jacksonville FLhttps://en.wikipedia.org/wiki/San_Marco,_Jacksonville
St Johns Town CenterSt. Johns Town Center is an upscale open-air retail center in Jacksonville FL, showcasing a selection of high-end stores, well-known labels, and eateries. It's a premier destination for purchasing, dining, and entertainment in Northeast Florida.https://en.wikipedia.org/wiki/Southside,_Jacksonville#St._Johns_Town_Center
Avondale Historic DistrictAvondale Historic District showcases delightful early 20th-century architecture and specialty shops. It's a vibrant neighborhood known for its local restaurants and historic character. Jacksonville FLhttps://en.wikipedia.org/wiki/Avondale_Historic_District_(Jacksonville,_Florida)
Treaty Oak ParkTreaty Oak Park is a lovely area in Jacksonville FL, home to a massive, centuries-old oak tree. The park offers a peaceful retreat with walking paths and scenic views of the St. Johns River.https://en.wikipedia.org/wiki/Treaty_Oak
Little Talbot Island State ParkLittle Talbot Island State Park in Jacksonville FL offers untouched shores and diverse habitats. Visitors can partake in activities such as hiking, camping, and observing wildlife in this unspoiled coastal environment.https://en.wikipedia.org/wiki/Talbot_Islands_State_Parks
Big Talbot Island State ParkBig Talbot Island State Park in Jacksonville FL, provides stunning coastal views and diverse ecosystems for nature lovers. Explore the one-of-a-kind boneyard beach, hike scenic trails, and watch abundant wildlife in this beautiful natural sanctuary.https://en.wikipedia.org/wiki/Talbot_Islands_State_Parks
Kathryn Abbey Hanna ParkKathryn Abbey Hanna Park in Jacksonville FL, offers a gorgeous beach, forested trails, and a 60-acre freshwater lake for leisure. It is a popular place for camping, surfing, kayaking, and biking.https://en.wikipedia.org/wiki/Kathryn_Abbey_Hanna_Park
Jacksonville Arboretum and GardensJacksonville Arboretum and Gardens provides a lovely ecological escape with diverse trails and themed gardens. Visitors can explore a variety of plant life and relish tranquil outside recreation.https://en.wikipedia.org/wiki/Arboretum_%26_Gardens_of_Jacksonville
Memorial ParkMemorial Park is a 5.25-acre area that acts as a tribute to the more than 1,200 Floridians who lost their lives in World War I. The area features a statue, pool, and gardens, providing a space for remembrance and reflection. Jacksonville FLhttps://en.wikipedia.org/wiki/Memorial_Park_(Jacksonville)
Hemming ParkHemming Park is Jacksonville FL's oldest park, a historical public square hosting events, bazaars, and community gatherings. It offers a lush space in the heart of downtown with art installations and a vibrant atmosphere.https://en.wikipedia.org/wiki/James_Weldon_Johnson_Park
Metropolitan ParkMetropolitan Park in Jacksonville FL provides a beautiful riverfront setting for gatherings and recreation. Featuring play areas, a music stage, and breathtaking views, it's a popular spot for residents and tourists alike.https://en.wikipedia.org/wiki/Metropolitan_Park_(Jacksonville)
Confederate ParkConfederate Park in Jacksonville FL, was initially designated to pay tribute to Confederate soldiers and sailors. It has since been renamed and transformed as a place for community events and recreation.https://en.wikipedia.org/wiki/Confederate_Park_(Jacksonville)
Beaches Museum and History ParkBeaches Museum and History Park safeguards and communicates the distinct history of Jacksonville's beaches. Explore exhibits on nearby life-saving, surfing, and early beach communities.https://en.wikipedia.org/wiki/Beaches_Museum_%26_History_Park
Atlantic BeachAtlantic Beach features a charming seaside area with gorgeous beaches and a calm atmosphere. Visitors can enjoy surfing, swimming, and exploring local shops and restaurants near Jacksonville FL.https://en.wikipedia.org/wiki/Atlantic_Beach,_Florida
Neptune BeachNeptune Beach provides a typical Florida beach town feeling with its sandy beaches and relaxed atmosphere. Guests can enjoy surfing, swimming, and exploring nearby shops and restaurants in Jacksonville FL.https://en.wikipedia.org/wiki/Neptune_Beach,_Florida
Jacksonville BeachJacksonville Beach is a vibrant coastal city well-known for its sandy shores and surfing scene. It provides a blend of recreational activities, dining, and nightlife beside the Atlantic Ocean.https://en.wikipedia.org/wiki/Jacksonville_Beach,_Florida
Huguenot Memorial ParkHuguenot Memorial Park provides a beautiful beachfront location with chances for camping, fishing, and birdwatching. Visitors can savor the natural beauty of the region with its diverse wildlife and scenic coastal views in Jacksonville FL.https://en.wikipedia.org/wiki/Fort_Caroline_National_Memorial
Castaway Island PreserveCastaway Island Preserve in Jacksonville FL, provides picturesque trails and walkways through diverse ecosystems. Visitors can relish nature walks, bird watching, and discovering the splendor of the shoreline area.https://en.wikipedia.org/wiki/Castaway_Island_Preserve_Park
Yellow Bluff Fort Historic State ParkYellow Bluff Fort Historic State Park in Jacksonville FL safeguards the dirt remains of a Civil War Confederate fort. Visitors can explore the historical location and learn about its meaning by way of interpretive displays.https://en.wikipedia.org/wiki/Fort_San_Nicolas
Mandarin Museum & Historical SocietyThe Mandarin Museum & Historical Society safeguards the history of the Mandarin neighborhood in Jacksonville FL. Visitors are able to view exhibits and relics that display the region's special past.https://en.wikipedia.org/wiki/Mandarin_Schoolhouse
Museum of Southern HistoryThe Museum of Southern History exhibits artifacts and displays related to the history and culture of the Southern United States. Visitors can investigate a range of topics, including the Civil War, slavery, and Southern art and literature. Jacksonville FLhttps://en.wikipedia.org/wiki/Museum_of_Science_and_History_(Jacksonville)
The Catty Shack Ranch Wildlife SanctuaryThe Catty Shack Ranch Wildlife Sanctuary in Jacksonville FL, provides guided walking tours to see saved big cats and other exotic animals. It's a not-for-profit organization committed to offering a safe, caring, forever home for these animals.https://en.wikipedia.org/wiki/Jacksonville_Zoo_and_Gardens
Air Conditioning InstallationProper placement of cooling systems assures effective and pleasant indoor climates. This important process ensures best performance and longevity of climate control units.https://en.wikipedia.org/wiki/Air_conditioning
Air ConditionerAir Conditioners cool indoor spaces by extracting heat and humidity. Proper installation by certified technicians ensures effective operation and optimal climate control.https://en.wikipedia.org/wiki/Air_conditioning
HvacHvac systems govern temperature and air quality. They are crucial for establishing environmental control answers in structures.https://en.wikipedia.org/wiki/HVAC
ThermostatA Thermostat is the control center for managing temperature in climate control systems. It tells the cooling unit to activate and deactivate, keeping the desired indoor environment.https://en.wikipedia.org/wiki/Thermostat
RefrigerantRefrigerant is crucial for cooling systems, extracting heat to generate cool air. Correct treatment of refrigerants is critical during HVAC setup for efficient and secure operation.https://en.wikipedia.org/wiki/Refrigerant
CompressorThe Compressor is a vital component of the cooling system, pumping refrigerant. The process is key for effective temperature regulation in climate control setups.https://en.wikipedia.org/wiki/Compressor
Evaporator CoilThe Evaporator Coil absorbs heat from inside air, bringing it down. This part is essential for effective climate control system installation in buildings.https://en.wikipedia.org/wiki/Air_conditioning
Condenser CoilThis Condenser Coil is an integral component in cooling systems, releasing heat outside. It aids the heat exchange needed for effective indoor climate management.https://en.wikipedia.org/wiki/Condenser_(heat_transfer)
DuctworkDuctwork is vital for spreading cooled air around a building. Correct duct design and installation are vital for effective climate management system location.https://en.wikipedia.org/wiki/Duct_(HVAC)
VentilationEffective Ventilation is essential for suitable airflow and indoor air quality. It has a vital role in ensuring optimal operation and efficiency of climate control systems.https://en.wikipedia.org/wiki/Ventilation
Heat PumpHeat pumps move heat, providing both heating and cooling. They are vital components in modern climate control system installations, offering energy-efficient temperature regulation.https://en.wikipedia.org/wiki/Heat_pump
Split SystemSplit System offer both cooling and heating via an indoor unit linked to an outdoor compressor. They offer a ductless solution for temperature control in specific rooms or areas.https://en.wikipedia.org/wiki/Air_conditioning
Central Air ConditioningCentral air conditioning systems cool entire homes from a single, potent unit. Correct installation of these systems is essential for streamlined and effective home chilling.https://en.wikipedia.org/wiki/Air_conditioning
Energy Efficiency RatioEnergy Efficiency Ratio measures cooling effectiveness: higher Energy Efficiency Ratio shows better performance and reduced energy consumption for climate control systems. Selecting a unit with a high Energy Efficiency Ratio can significantly lower long-term costs when installing a new climate control system.https://en.wikipedia.org/wiki/Energy_efficiency_ratio
Variable Speed CompressorVariable Speed Compressor change cooling production to match need, improving performance and comfort in HVAC systems. This exact adjustment lowers energy waste and keeps uniform thermals in building environments.https://en.wikipedia.org/wiki/Air_conditioning
Compressor MaintenanceMaintaining compressors ensures effective performance and longevity in cooling systems. Neglecting it can lead to expensive repairs or system failures when setting up climate control.https://en.wikipedia.org/wiki/Air_compressor
Air FilterAir Filter trap dirt and particles, making sure of clean airflow inside HVAC systems. This improves system efficiency and indoor air quality during climate control process.https://en.wikipedia.org/wiki/Air_filter
Installation ManualAn Installation Manual gives key direction for properly installing a cooling system. It guarantees proper procedures are followed for optimal performance and safety during the unit's setup.https://en.wikipedia.org/wiki/Air_conditioning
Electrical WiringElectrical Wiring is critical for powering and controlling the parts of climate control systems. Correct wiring assures safe and efficient operation of the cooling and heating units.https://en.wikipedia.org/wiki/Electrical_wiring
Indoor UnitIndoor Unit moves conditioned air within a room. This is a critical part for climate control systems, guaranteeing proper temperature management in structures.https://en.wikipedia.org/wiki/Air_conditioning
Outdoor UnitThis Outdoor Unit contains the compressor and condenser, dissipating heat externally. It's crucial for a full climate control system setup, ensuring efficient cooling inside.https://en.wikipedia.org/wiki/Air_conditioning
MaintenanceRoutine upkeep ensures efficient operation and lengthens the lifespan of climate control systems. Proper Maintenance prevents breakdowns and improves the efficiency of installed cooling systems.https://en.wikipedia.org/wiki/Air_conditioning
Energy EfficiencyEnergy Efficiency is vital for reducing energy consumption and expenses when establishing new climate control systems. Emphasizing effective equipment and suitable installation reduces environmental impact and increases long-term savings.https://en.wikipedia.org/wiki/Energy_efficiency
ThermodynamicsThermodynamics explains how heat moves and converts energy, crucial for cooling system system. Effective climate control creation relies on thermodynamic principles to optimize energy use during setup placement.https://en.wikipedia.org/wiki/Thermodynamics
Building CodesConstruction regulations ensure correct and secure HVAC system setup in structures. They regulate aspects such as energy efficiency and air flow for climate control systems.https://en.wikipedia.org/wiki/Building_code
Load CalculationLoad Calculation establishes the heating and chilling requirements of a room. It's vital for picking suitably sized HVAC units for efficient environmental control.https://en.wikipedia.org/wiki/Heat_transfer
Mini SplitMini Split offer a ductless approach to climate control, offering focused heating and cooling. The ease of placement renders them suitable for spaces where adding ductwork for temperature control is impractical.https://en.wikipedia.org/wiki/Split-system_air_conditioner
Air HandlerThe Air Handler circulates treated air around a building. It's a critical component for proper climate control system setup.https://en.wikipedia.org/wiki/Air_handler
InsulationThermal protection is vital for keeping effective temperature control within a structure. It reduces heat transfer, lessening the workload on air conditioning and improving temperature setups.https://en.wikipedia.org/wiki/Thermal_insulation
Drainage SystemDrainage systems clear moisture created by air conditioning equipment. Proper drainage stops water damage and assures effective operation of climate control setups.https://en.wikipedia.org/wiki/Condensate_drain
FilterFilters are vital parts that remove contaminants from the air during the installation of climate control systems. This ensures purer air circulation and protects the system's internal components.https://en.wikipedia.org/wiki/Air_filter
Heating Ventilation And Air ConditioningHeating Ventilation And Air Conditioning systems regulate inside climate by controlling temperature, humidity, and air quality. Proper setup of these systems ensures efficient and productive refrigeration and climate control inside buildings.https://en.wikipedia.org/wiki/HVAC
Split System Air ConditionerSplit system air conditioners provide efficient refrigeration and heating by separating the compressor and condenser from the air handler. Their design eases the process of establishing climate control in residences and businesses.https://en.wikipedia.org/wiki/Air_conditioning
Hvac TechnicianHvac Technicians are qualified experts who focus in the configuration of temperature regulation systems. They ensure proper functionality and efficiency of these systems for ideal indoor well-being.https://en.wikipedia.org/wiki/Air_conditioning
Indoor Air QualityThe quality of indoor air significantly impacts well-being and health, so HVAC system installation should emphasize filtration and ventilation. Appropriate system planning and installation is crucial for optimizing air quality.https://en.wikipedia.org/wiki/Indoor_air_quality
Condensate DrainThe Condensate Drain removes water created throughout the cooling operation, stopping damage and maintaining system efficiency. Correct drain assembly is crucial for successful climate control installation and extended performance.https://en.wikipedia.org/wiki/Condensation
Variable Refrigerant FlowVariable Refrigerant Flow (VRF) systems accurately control refrigerant volume to different zones, offering tailored cooling and heating. This technology is essential for creating effective and adaptable climate control in building environments.https://en.wikipedia.org/wiki/Variable_refrigerant_flow
Building Automation SystemBuilding Automation System coordinate and streamline the functioning of HVAC devices. This leads to improved temperature regulation and power savings in buildings.https://en.wikipedia.org/wiki/Building_automation
Air ConditioningHVAC systems adjust indoor temperature and atmosphere. Proper installation of these systems is crucial for efficient and effective climate control.https://en.wikipedia.org/wiki/Air_conditioning
Temperature ControlAccurate temperature control is essential for efficient climate control system setup. It guarantees peak performance and comfort in new cooling systems.https://en.wikipedia.org/wiki/Thermostat
ThermistorThermistors are temperature-sensitive resistors used in climate control systems to accurately measure air temperature. This data helps to control system operation, guaranteeing peak performance and energy efficiency in ecological control arrangements.https://en.wikipedia.org/wiki/Thermistor
ThermocoupleThermocouples are devices crucial for ensuring proper HVAC system setup. They precisely measure temperature, allowing precise modifications and peak climate control function.https://en.wikipedia.org/wiki/Thermocouple
Digital ThermostatThese devices accurately regulate temperature, optimizing HVAC system performance. They are essential for setting up home climate control systems, guaranteeing effective and comfortable environments.https://en.wikipedia.org/wiki/Thermostat
Programmable ThermostatProgrammable Thermostats improve climate control systems by enabling customized temperature routines. This results in enhanced energy savings and comfort in residential AC setups.https://en.wikipedia.org/wiki/Thermostat
Smart ThermostatSmart thermostats streamline home climate control by learning user preferences and adjusting the temperature automatically. They play a vital role in modern HVAC system configurations, improving energy efficiency and comfort.https://en.wikipedia.org/wiki/Smart_thermostat
Bimetallic StripA Bimetallic Strip, composed of two metals that have different expansion rates, bends in reaction to temperature changes. This property is utilized in HVAC systems to operate thermostats and adjust heating or cooling processes.https://en.wikipedia.org/wiki/Bimetallic_strip
Capillary Tube ThermostatThe Capillary Tube Thermostat accurately regulates temperature in cooling systems via remote sensing. The component is essential for keeping desired climate control within buildings.https://en.wikipedia.org/wiki/Thermostat
Thermostatic Expansion ValveThe Thermostatic Expansion Valve regulates refrigerant stream into the evaporator, keeping best cooling. This part is crucial for efficient operation of refrigeration and climate control systems in buildings.https://en.wikipedia.org/wiki/Thermostatic_expansion_valve
SetpointSetpoint is the desired temperature a climate management system intends to achieve. It guides the system's operation during climate management setups to maintain preferred comfort degrees.https://en.wikipedia.org/wiki/Setpoint
Temperature SensorTemperature Sensors are crucial for controlling heating, ventilation, and air conditioning systems by tracking air temperature and guaranteeing optimal climate control. Their data helps enhance system performance during climate control installation and maintenance.https://en.wikipedia.org/wiki/Thermometer
Feedback LoopThe Feedback Loop assists with regulating temperature during climate control system installation by continuously monitoring and modifying settings. This ensures peak performance and energy efficiency of installed residential cooling.https://en.wikipedia.org/wiki/Control_theory
Control SystemControl Systems control temperature, moisture, and airflow in environmental control setups. These systems ensure optimal comfort and energy efficiency in temperature-controlled environments.https://en.wikipedia.org/wiki/HVAC_control_system
Thermal EquilibriumThermal Equilibrium is achieved when parts attain the same temperature, essential for efficient climate control system installation. Proper balance ensures peak performance and energy savings in installed cooling systems.https://en.wikipedia.org/wiki/Thermal_equilibrium
Thermal ConductivityThermal Conductivity dictates how efficiently materials conduct heat, impacting the cooling system setup. Choosing materials with appropriate thermal properties ensures best performance of installed climate control systems.https://en.wikipedia.org/wiki/Thermal_conductivity
Thermal InsulationThermal insulation minimizes heat flow, ensuring efficient cooling by reducing the workload on climate control systems. This boosts energy efficiency and keeps consistent temperatures in buildings.https://en.wikipedia.org/wiki/Thermal_insulation
On Off ControlOn-Off Control keeps wanted temperatures by fully activating or turning off cooling systems. This simple method is crucial for regulating temperature within buildings throughout environmental control system setup .https://en.wikipedia.org/wiki/Hysteresis
Pid ControllerPID controllers accurately regulate temps in HVAC systems. This ensures effective temperature regulation during facility temperature configuration and functioning.https://en.wikipedia.org/wiki/PID_controller
EvaporatorThis Evaporator absorbs heat from within a location, cooling the air. This is a critical part in climate control systems designed for home comfort.https://en.wikipedia.org/wiki/Evaporator
CondenserThe Condenser unit is a essential part in cooling equipment, transferring heat removed from the indoor space to the outside environment. Its accurate setup is important for effective climate control system placement and performance.https://en.wikipedia.org/wiki/Condenser_(heat_transfer)
ChlorofluorocarbonChlorofluorocarbons were once common refrigerants that facilitated cooling in many building systems. Their role has decreased because of environmental concerns about ozone depletion.https://en.wikipedia.org/wiki/Chlorofluorocarbon
HydrofluorocarbonHydrofluorocarbon are coolants frequently used in cooling systems for structures and cars. Their proper treatment is essential during the establishment of environmental control systems to avoid environmental damage and guarantee effective operation.https://en.wikipedia.org/wiki/Hydrofluorocarbon
HydrochlorofluorocarbonHydrochlorofluorocarbons were previously widely used coolants in air conditioning systems for buildings. Their elimination has led to the use of more eco-friendly options for new HVAC setups.https://en.wikipedia.org/wiki/Hydrochlorofluorocarbon
Global Warming PotentialGlobal Warming Potential (GWP) shows how much a given mass of greenhouse gas adds to global warming over a specified period compared to carbon dioxide. Choosing refrigerants with less GWP is crucial when building climate control systems to lessen environmental effects.https://en.wikipedia.org/wiki/Global_warming_potential
Ozone DepletionOzone Depletion from refrigerants poses environmental risks. Technicians servicing cooling systems must follow regulations to prevent further damage.https://en.wikipedia.org/wiki/Ozone_depletion
Phase ChangePhase Change of refrigerants are vital for efficiently moving heat in climate control systems. Evaporation and condensation processes allow cooling by taking in heat indoors and releasing it outdoors.https://en.wikipedia.org/wiki/Phase_transition
Heat TransferHeat Transfer principles are vital for effective climate control system establishment. Knowing conduction, convection, and radiation assures optimal system performance and energy efficiency during the course of establishing home cooling.https://en.wikipedia.org/wiki/Heat_transfer
Refrigeration CycleThe cooling process transfers heat, allowing refrigeration in HVAC systems. Proper setup and upkeep ensure effective operation and long life of these refrigeration solutions.https://en.wikipedia.org/wiki/Vapor-compression_refrigeration
Environmental Protection AgencyThe Environmental Protection Agency regulates refrigerants and sets standards for HVAC system servicing to safeguard the ozone layer and reduce greenhouse gas emissions. Technicians handling cooling equipment must be certified to guarantee correct refrigerant handling and prevent environmental damage.https://en.wikipedia.org/wiki/United_States_Environmental_Protection_Agency
Leak DetectionLeak Detection guarantees the soundness of refrigerant pipes after climate control system placement. Identifying and fixing leaks is vital for peak performance and environmental safety of newly installed climate control systems.https://en.wikipedia.org/wiki/Leak_detection_and_repair
Pressure GaugePressure gauges are essential tools for checking refrigerant levels during HVAC system setup. They ensure optimal performance and prevent damage by verifying pressures are within certain ranges for proper cooling operation.https://en.wikipedia.org/wiki/Pressure_measurement
Expansion ValveThis Expansion Valve controls refrigerant flow in cooling systems, allowing for efficient heat uptake. It is a key component for optimal performance in environmental control setups.https://en.wikipedia.org/wiki/Expansion_valve
Cooling CapacityCooling capacity determines how effectively a system can reduce the temperature of a space. Choosing the correct level is essential for peak performance in placement of environmental control systems.https://en.wikipedia.org/wiki/Air_conditioning
Refrigerant RecoveryRefrigerant Recovery is the method of removing and keeping refrigerants during HVAC system setups. Correctly recovering refrigerants prevents environmental harm and guarantees efficient new cooling equipment installations.https://en.wikipedia.org/wiki/Refrigerant
Refrigerant RecyclingRefrigerant Recycling recovers and reuses refrigerants, lessening environmental effects. This process is vital when setting up climate control systems, ensuring responsible handling and avoiding ozone depletion.https://en.wikipedia.org/wiki/Refrigerant
Safety Data SheetSafety Data Sheets (SDS) supply crucial information on the secure handling and possible hazards of chemicals utilized in cooling system installation. Technicians use SDS data to defend themselves and prevent accidents during HVAC equipment installation and connection.https://en.wikipedia.org/wiki/Safety_data_sheet
Synthetic RefrigerantSynthetic Refrigerants are vital fluids utilized in cooling systems to transfer heat. Their correct management is key for efficient climate control setup and maintenance.https://en.wikipedia.org/wiki/Refrigerant
Heat ExchangeHeat Exchange is essential for cooling buildings, enabling effective temperature regulation. It's a pivotal process in climate control system installation, facilitating the movement of heat to offer comfortable indoor spaces.https://en.wikipedia.org/wiki/Heat_exchanger
Cooling CycleThe Cooling Cycle is the basic process of heat removal, utilizing refrigerant to take in and give off heat. This cycle is essential for effective climate control system installation in buildings.https://en.wikipedia.org/wiki/Vapor-compression_refrigeration
Scroll CompressorScroll compressors effectively pressurize refrigerant to power cooling systems. They are a vital component for effective temperature regulation in buildings.https://en.wikipedia.org/wiki/Scroll_compressor
Reciprocating Compressor Reciprocating Compressors are essential components that squeeze refrigerant in cooling systems. They aid heat exchange, allowing effective climate control within buildings .https://en.wikipedia.org/wiki/Reciprocating_compressor
Centrifugal CompressorCentrifugal Compressors are vital parts that raise refrigerant stress in wide climate management systems. They effectively circulate refrigerant, allowing effective refrigeration and heating across wide areas.https://en.wikipedia.org/wiki/Centrifugal_compressor
Rotary CompressorRotary Compressor represent a vital component in cooling systems, employing a spinning device to compress refrigerant. Their effectiveness and small size render them ideal for climate control setups in diverse applications.https://en.wikipedia.org/wiki/Rotary_compressor
Compressor MotorThis Compressor Motor serves as the main force for the cooling process, moving refrigerant. It is crucial for correct climate control system setup and operation in buildings.https://en.wikipedia.org/wiki/Air_conditioning
Compressor OilCompressor lubricant lubricates and protects mechanical parts within a system's compressor, ensuring efficient refrigerant pressurization for suitable climate regulation. It is important to select the correct type of oil during system setup to guarantee durability and peak performance of the cooling appliance.https://en.wikipedia.org/wiki/Lubricant
Pressure SwitchThe Pressure Switch checks refrigerant levels, ensuring the system works securely. It prevents damage by shutting down the cooling apparatus if pressure falls outside the acceptable range.https://en.wikipedia.org/wiki/Pressure_sensor
Compressor RelayThe Compressor Relay is an electrical switch that controls the compressor motor in cooling systems. It guarantees the compressor starts and stops correctly, allowing effective temperature regulation within climate control systems.https://en.wikipedia.org/wiki/Relay
Suction LineThe Suction Line, a key component in cooling systems, moves refrigerant vapor from the evaporator back the compressor. Proper sizing and insulation of this line are vital for efficient system performance during climate control setup.https://en.wikipedia.org/wiki/Air_conditioning
Discharge LineThis discharge line moves hot, high-pressure refrigerant gas from the compressor to the condenser. Proper sizing and setup of this Discharge Line are essential for the best cooling system setup.https://en.wikipedia.org/wiki/Refrigeration
Compressor CapacityCompressor Capacity dictates the cooling capability of a system for indoor climate control. Choosing the right size ensures effective temperature regulation during climate control setup.https://en.wikipedia.org/wiki/Air_conditioning
Cooling LoadCooling Load is the volume of heat that needs to be removed from a area to maintain a preferred temperature. Correct cooling load calculation is crucial for proper HVAC system installation and sizing.https://en.wikipedia.org/wiki/Heat_transfer
Air Conditioning RepairAir Conditioning Repair ensures systems operate optimally after they are installed. It's crucial for keeping efficient climate control systems put in place.https://en.wikipedia.org/wiki/Air_conditioning
Refrigerant LeakRefrigerant Leaks decrease cooling effectiveness and can cause equipment failure. Addressing these leaks is critical for proper climate control system setup, guaranteeing optimal operation and lifespan.https://en.wikipedia.org/wiki/Air_conditioning
Seer RatingSEER rating indicates an HVAC system's cooling performance, impacting long-term energy costs. Higher SEER numbers imply increased energy savings when setting up climate control.https://en.wikipedia.org/wiki/Seasonal_energy_efficiency_ratio
Hspf RatingHSPF rating shows the heating effectiveness of heat pumps. Higher ratings indicate better energy effectiveness during climate control setup.https://en.wikipedia.org/wiki/Seasonal_energy_efficiency_ratio
Preventative MaintenancePreventative Maintenance makes sure HVAC systems operate efficiently and reliably after installation. Regular servicing minimizes failures and lengthens the lifespan of climate control setups.https://en.wikipedia.org/wiki/Preventive_maintenance
AirflowAirflow assures efficient cooling and heating distribution across a building. Suitable Airflow is essential for optimal performance and comfort in climate control systems.https://en.wikipedia.org/wiki/Air_conditioning
Electrical ComponentsElectrical Components are essential for powering and managing systems that govern indoor climate. They ensure correct operation, safety, and effectiveness in temperature regulation arrangements.https://en.wikipedia.org/wiki/Air_conditioning
Refrigerant ChargingRefrigerant Charging is the procedure of adding the proper amount of refrigerant to a cooling system. This ensures optimal performance and effectiveness when setting up climate control units.https://en.wikipedia.org/wiki/Air_conditioning
System DiagnosisThe System Diagnosis process identifies possible issues prior to, while, and after HVAC system installation. It guarantees peak operation and hinders future troubles in climate control setups.https://en.wikipedia.org/wiki/Fault_detection_and_isolation
Hvac SystemHVAC systems regulate temperature, humidity, and air quality in buildings. They are critical for setting up climate-control solutions in residential and commercial spaces.https://en.wikipedia.org/wiki/HVAC
Ductless Air ConditioningDuctless systems provide targeted temperature control without large ductwork. They simplify temperature control setup in spaces that lack existing duct systems.https://en.wikipedia.org/wiki/Air_conditioning
Window Air ConditionerWindow air conditioners are self-contained units installed in windows to cool single rooms. They offer a simple way for localized temperature regulation inside a building.https://en.wikipedia.org/wiki/Air_conditioning
Portable Air ConditionerPortable Air Conditioner units offer a adaptable cooling answer for spaces lacking central systems. They can also provide temporary temperature regulation during HVAC system setups.https://en.wikipedia.org/wiki/Air_conditioning
System InspectionSystem check ensures proper setup of cooling systems by verifying component condition and compliance to installation standards. This process assures effective operation and prevents future malfunctions in climate control systems.https://en.wikipedia.org/wiki/Inspection
Coil CleaningCleaning coils ensures efficient heat transfer, crucial for peak system performance. This maintenance procedure is vital for correct setup of climate control systems.https://en.wikipedia.org/wiki/Air_conditioning
Refrigerant RechargeRefrigerant Recharge is vital for recovering cooling capacity in air conditioning units. It ensures optimal performance and lifespan of newly set up climate control equipment.https://en.wikipedia.org/wiki/Air_conditioning
CapacitorThese devices provide the necessary energy increase to start and run motors within climate control systems. Their proper function ensures efficient and dependable operation of the cooling unit.https://en.wikipedia.org/wiki/Capacitor
ContactorThe Contactor serves as an electrical switch that controls power for the outdoor unit's components. It enables the cooling system to turn on when necessary.https://en.wikipedia.org/wiki/Contactor
Blower MotorThe Blower Motor moves air through the ductwork, allowing for effective heating and cooling delivery within a building. It's a vital component for indoor climate control systems, guaranteeing consistent temperature and airflow.https://en.wikipedia.org/wiki/Air_conditioning
OverheatingOverheating can severely hamper the functionality of recently installed climate control systems. Technicians must resolve this issue to guarantee efficient and reliable cooling operation.https://en.wikipedia.org/wiki/Air_conditioning
TroubleshootingFixing identifies and fixes problems that occur during climate control system installation. Sound troubleshooting guarantees optimal system performance and stops later issues during building cooling appliance fitting.https://en.wikipedia.org/wiki/Troubleshooting
Refrigerant ReclaimingRefrigerant Reclaiming retrieves and reprocesses used refrigerants. This process is vital for environmentally responsible climate control system establishment.https://en.wikipedia.org/wiki/Refrigerant
Global WarmingGlobal Warming increases the demand or for cooling systems, requiring demanding more frequent setups installations. This heightened increased need drives fuels innovation in energy-efficient power-saving climate control solutions options.https://en.wikipedia.org/wiki/Global_warming
Montreal ProtocolThis Montreal Protocol eliminates ozone-depleting substances used in cooling systems. This change necessitates utilizing alternative refrigerants in new environmental control setups.https://en.wikipedia.org/wiki/Montreal_Protocol
Greenhouse GasGreenhouse gases trap warmth, affecting the energy efficiency and environmental footprint of climate control system setups. Choosing refrigerants with lower global warming potential is essential for eco-friendly weather control implementation.https://en.wikipedia.org/wiki/Greenhouse_gas
CfcChlorofluorocarbons were formerly essential refrigerants in cooling systems for buildings and vehicles. Their use has been phased out due to their harmful impact on the ozone layer.https://en.wikipedia.org/wiki/Chlorofluorocarbon
HcfcHcfc were once typical refrigerants used in cooling systems for buildings and vehicles. They eased the process of establishing climate control systems, but are now being phased out due to their ozone-depleting properties.https://en.wikipedia.org/wiki/Chlorodifluoromethane
HfcHFCs are generally used refrigerants in refrigeration systems for buildings. Their appropriate handling is essential during the installation of these systems to minimize environmental impact.https://en.wikipedia.org/wiki/Hydrocarbon_refrigerant
Refrigerant OilCooling lubricant oils the pump in refrigeration units, ensuring smooth performance and a long lifespan. It's crucial for the proper function of cooling setups.https://en.wikipedia.org/wiki/Lubricant
Phase-OutPhase-out is related to the progressive removal of specific refrigerants with high global warming capacity. This affects the choice and maintenance of climate control systems in buildings.https://en.wikipedia.org/wiki/Ozone_depletion
GwpGWP indicates a refrigerant's ability to warm the planet if discharged. Lower GWP refrigerants are progressively favored in climate-friendly HVAC system configurations.https://en.wikipedia.org/wiki/Global_warming_potential
OdpODP refrigerants harm the ozone layer, influencing regulations for refrigeration system setup. Installers must utilize ozone-friendly alternatives during climate control equipment placement.https://en.wikipedia.org/wiki/Ozone_depletion
AshraeASHRAE defines standards and guidelines for HVAC systems configuration. The standards ensure effective and safe climate control systems implementation in buildings.https://en.wikipedia.org/wiki/ASHRAE
Hvac SystemsHvac Systems provide temperature and air quality control for indoor settings. They are essential for establishing cooling systems in buildings.https://en.wikipedia.org/wiki/HVAC
Refrigerant LeaksRefrigerant Leaks lower cooling system effectiveness and can damage the environment. Appropriate procedures during climate control unit installation are essential to avoid these leaks and ensure best performance.https://en.wikipedia.org/wiki/Air_conditioning
Hvac Repair CostsHvac Repair Costs can greatly affect choices about upgrading to a new climate control system. Unforeseen repair bills may prompt homeowners to invest in a full home cooling system for future savings.https://en.wikipedia.org/wiki/Air_conditioning
Hvac InstallationHvac Installation involves setting up heating, air flow, and air conditioning systems. This is essential for enabling efficient climate control within buildings.https://en.wikipedia.org/wiki/Air_conditioning
Hvac MaintenanceHvac Maintenance guarantees efficient performance and extends system life. Appropriate maintenance is essential for smooth climate control system setups.https://en.wikipedia.org/wiki/Heating,_ventilation,_and_air_conditioning
Hvac TroubleshootingHvac Troubleshooting pinpoints and resolves issues in heating, ventilation, and cooling systems. It ensures peak performance during climate control unit installation and operation.https://en.wikipedia.org/wiki/Air_conditioning
Zoning SystemsZoning schemes separate a building into individual areas for customized temperature regulation. This method enhances comfort and energy efficiency during HVAC configuration.https://en.wikipedia.org/wiki/Heating,_ventilation,_and_air_conditioning
Compressor TypesVarious Compressor Types are critical parts for effective climate control systems. Their choice significantly impacts system effectiveness and performance in environmental comfort applications.https://en.wikipedia.org/wiki/Air_compressor
Compressor EfficiencyCompressor Efficiency is vital, dictating how effectively the system cools a room for a given energy input. Improving this efficiency directly impacts cooling system setup costs and long-term operational expenses.https://en.wikipedia.org/wiki/Centrifugal_compressor
Compressor OverheatingCompressor Overheating can seriously harm the unit's heart, resulting in system malfunction. Proper setup ensures adequate air flow and refrigerant amounts, preventing this issue in climate control system placements.https://en.wikipedia.org/wiki/Air_conditioning
Compressor FailureCompressor Failure halts the refrigeration process, requiring expert service during climate control system setups. A faulty compressor jeopardizes the entire system's performance and longevity when incorporating it into a building.https://en.wikipedia.org/wiki/Air_conditioning
Overload ProtectorAn protects the compressor motor from overheating during climate control system setup. It stops damage by automatically disconnecting power when too much current or temperature is detected.https://en.wikipedia.org/wiki/Circuit_breaker
Fan MotorFan Motor move air through evaporator and condenser coils, a critical process for efficient climate control system setup. They aid heat exchange, ensuring peak cooling and heating operation within the specified space.https://en.wikipedia.org/wiki/Fan
Refrigerant LinesRefrigerant Lines are crucial components that join the indoor and outside units, moving refrigerant to facilitate cooling. Their proper installation is key for streamlined and productive climate control system installation.https://en.wikipedia.org/wiki/Air_conditioning
Condensing UnitA Condensing Unit is the outside part in a cooling system. It removes heat from the refrigerant, allowing indoor temperature control.https://en.wikipedia.org/wiki/HVAC
Heat RejectionHeat Rejection is essential for refrigeration systems to effectively remove unwanted heat from a cooled area. Appropriate Heat Rejection guarantees efficient performance and longevity of climate control setups.https://en.wikipedia.org/wiki/Heat_sink
System EfficiencySystem Efficiency is vital for minimizing energy use and operational costs. Improving performance during climate control setup guarantees long-term economy and environmental advantages.https://en.wikipedia.org/wiki/Energy_efficiency
Pressure DropPressure Drop is the decrease in fluid pressure as it moves through a setup, affecting airflow in environmental control setups. Properly managing Pressure Drop is essential for peak performance and effectiveness in environmental comfort systems.https://en.wikipedia.org/wiki/Pressure_drop
SubcoolingSubcooling process guarantees peak equipment operation by chilling the refrigerant below its condensing temperature. This process prevents flash gas, maximizing cooling power and efficiency during HVAC system setup.https://en.wikipedia.org/wiki/Superheating_and_subcooling
SuperheatSuperheat ensures that only vapor refrigerant enters the compressor, which prevents damage. It's important to measure superheat during HVAC system setup to optimize cooling performance and efficiency.https://en.wikipedia.org/wiki/Superheating
Refrigerant ChargeRefrigerant Charge is the amount of refrigerant in a system, vital for best cooling operation. Proper filling guarantees effective heat exchange and avoids damage during climate control installation.https://en.wikipedia.org/wiki/Air_conditioning
CorrosionCorrosion degrades metallic components, possibly leading to leakage and system failures. Protecting against Corrosion is critical for maintaining the effectiveness and lifespan of climate control setups.https://en.wikipedia.org/wiki/Corrosion
Fins Blades augment the area of coils, boosting heat transfer efficiency. This is vital for best performance in climate control system setups.https://en.wikipedia.org/wiki/Heat_sink
Copper TubingCopper piping is vital for refrigerant transfer in air conditioning systems due to its durability and efficient heat transfer. Its trustworthy connections guarantee correct system function during establishment of climate units.https://en.wikipedia.org/wiki/Plumbing
Aluminum TubingAluminum piping is vital for transporting refrigerant in climate control systems. Its lightweight and rustproof properties render them perfect for connecting internal and external units in HVAC installations.https://en.wikipedia.org/wiki/Air_conditioning
Repair CostsUnforeseen maintenance can greatly impact the overall expense of setting up a new climate control system. Budgeting for potential Repair Costs ensures a more accurate and comprehensive cost assessment when implementing such a system.https://en.wikipedia.org/wiki/Air_conditioning

Bold City Heating & Air

4.9(1,687)

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8400 Baymeadows Way Suite 1, Jacksonville, FL 32256, United States

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boldcityac.com

boldcityac.com

+1 904-379-1648

6C9C+2H Baymeadows Center, Jacksonville, FL, USA

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That Florida sun? It doesn’t play. Prepping your HVAC system now means cool breezes later. Clean filters āœ”ļø Check refrigerant āœ”ļø Program thermostats āœ”ļø šŸ”„ Be heatwave-ready with Bold City Heating & Air! Book your seasonal check-up and beat the summer rush!

3 days ago

Updates from customers

Randolph and the crew were so nice and they did a AWESOME Job of putting in new ductwork & installation. Great group of guys. RT would answer any questions you had. Felt comfortable with them in my home. From the girl at the front desk to everyone involved Thank You!! I Appreciate you all. I definitely would recommend this company to anyone 😊

a year ago

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Why would an AC heater not be turning on?

An AC heater may not turn on due to power issues like tripped circuit breakers, blown fuses, or loose wiring, thermostat problems such as dead batteries, incorrect settings, or a faulty unit, or safety features engaging due to clogged filte …

6 months ago

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1,687 reviews

"Best price and service I have ever had with an HVAC partner"

"Excellent workmanship, knowledgeable, friendly staff from owner to employees."

"They’ve been charging the service contract now the unit does not work."

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Abe Fernandez

11 reviews · 11 photos

a week ago

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DO NOT HIRE THIS COMPANY. TOOK THEM TO COURT AND WON!

We hired Bold City Heating and Air to replace all our air ducts, and the work they performed was shockingly defective. After the job was done we noticed that … More

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Kenneth Jefferson

5 reviews · 3 photos

2 months ago

Jacob; Ben & Josie were very professional and efficient. If I could give 10 stars I would. Very knowledgeable and they kept me informed throughout the whole process of my complete AC installation. The entire process was easy with Bold City … More

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Response from the owner 2 months ago

Thank you so much for your fantastic 5-star review, Kenneth & Monique! We're thrilled to hear that Jacob, Ben, and Josie provided you with professional and efficient service during your complete AC installation. At Bold City Heating & Air, … More

WILLIAM MOSIER

2 reviews · 4 photos

a month ago

Crew showed up on time got done earlier than expected. Everything was clean. They were quiet. I was able to work throughout the day while they were installing. Couldn’t have been more perfect. Happy with the service.

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Response from the owner a month ago

Thank you so much for your fantastic 5-star review, William! We're thrilled to hear that our team at Bold City Heating & Air made the installation process seamless and respectful of your work day. We appreciate your support and are glad you’re happy with our service! Let us know if you need anything else in the future!

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Bold City Heating & Air

HVAC & Air Conditioning Repair in Jacksonville, FL

Bold City offers premium HVAC service and competitive pricing to the Jacksonville, Jacksonville Beaches and Ponte Vedra areas.

24/7 Fast and Reliable. Jacksonville Grown. Family Owned & Operated.

Bold City Heating & Air Mascot

Summer HVAC Tune Up for Just $89

Get your system ready for the heat!

We’ll inspect, clean, and fine tune your HVAC to boost efficiency, prevent breakdowns, and keep you cool all season long.

Jacksonville’s Best HVAC Company


At Bold City Heating & Air, we offer our customers exceptional service when it comes to HVAC in Jacksonville, FL.

From heating and cooling repairs to energy-efficient HVAC installations that save you money, we do it all. When we opened our family-owned business in 2016, we knew we wanted to be the best around and that’s a passion that still stands.

From the moment you call us to the moment we carry out our work, you can depend on us. We believe in clear upfront pricing, no hidden costs, and the highest level of workmanship. With our NATE-certified technicians and Energy Star systems we give you the perfect combination of choice, value, and customer care.
“Experience the Bold Difference” that is Bold City Heating & Air by calling us today!

We Believe In:

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Clear Upfront Pricing

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No Hidden Costs

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High-Level Workmanship

Trusted Heating and Air Pros in Jacksonville


When it comes to heating and air services in Jacksonville, we offer all the services you need under one roof. But that’s not where our story ends.

From your HVAC system to your ducts and indoor air quality we offer a complete end-to-end solution. Our team is at the heart of everything we do. Our continuous program of education and training ensures our technicians are the best they can be. It also means our entire team stays up to date with the latest systems and technology. From our Energy Star systems to our whole-house approach, you can depend on every service and product we have to offer.

Our educated and experienced HVAC technicians specialize in a broad range of air conditioning, heating & indoor air quality solutions. We are dedicated to finding the right fit for your home or business. Our broad range of expertise ensures a solution to every challenge.

Satisfaction Guaranteed

Prioritizing satisfaction, Bold City Heating & Air exemplifies customer service.

Our Team Will:

  • Keep Your Informed
  • Target Your Goals
  • Provide Honest Answers

Services

Cooling
Heating
Duct Cleaning
Maintenance
New System Installation

Number One For Heating & Cooling


Keeping you comfortable is our top priority!

When you need an HVAC contractor backed by generations of experience and who truly cares about your satisfaction, turn to Bold City Heating & Air. From air conditioning repairs to the installation of a new energy-efficient heating system, you can depend on our team. We’ll get to you as quickly as we can to solve any problem you might be experiencing.

If you need help with HVAC installation or replacement, we’ll recommend the perfect system and provide you with a competitive quote. We’ll help you to save money on your energy costs going forward and can even help with financing on approved credit.

Jacksonville Grown. Family Owned & Operated.

See What Our Customers Are Saying About Us!


5 stars

Recently moved here from MD and was not familiar with the heating/AC unit. Bold City, especially Sam Powel, has been VERY helpful. In our short time here in FL, we have recommended Bold City to acquaintances numerous times, and will continue to do so.

Paul G.

5 stars

Another excellent job by Bold City. Bryan was on time, thorough, explained his analysis and solution, and completed the job. He demonstrated knowledge and expertise while providing a high level of customer service. Well done!!

John L.

5 stars

Recently moved here from MD and was not familiar with the heating/AC unit. Bold City, especially Sam Powel, has been VERY helpful. In our short time here in FL, we have recommended Bold City to acquaintances numerous times, and will continue to do so.

Paul G.

5 stars

Another excellent job by Bold City. Bryan was on time, thorough, explained his analysis and solution, and completed the job. He demonstrated knowledge and expertise while providing a high level of customer service. Well done!!

John L.

5 stars

Recently moved here from MD and was not familiar with the heating/AC unit. Bold City, especially Sam Powel, has been VERY helpful. In our short time here in FL, we have recommended Bold City to acquaintances numerous times, and will continue to do so.

Paul G.

An HVAC Team You Can Trust


When you’re looking for an HVAC company that you can count on, look no further than Bold City Heating & Air.

Why not try out our award-winning service for yourself? We promise to never give you the upsell. Our technicians don’t get paid commission and we don’t focus on profit margins. We know that if we give our customers the best service, our profits will look after themselves. Whether you’re looking for heating and cooling repairs in Jacksonville or you need HVAC installation or maintenance, speak to our friendly family-owned team.

We’re proud to offer our high quality HVAC services to the residents of Jacksonville. Contact our team at Bold City Heating & Air today and experience our great service for yourself!

Contact Your Bold City Specialist Today

Bold City Heating & Air āœ”ļø

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8400 Baymeadows Way Suite 1,Jacksonville, FL 32256,United States

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+19043791648

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30.217562,-81.578579

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Air conditioning repair service

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Air conditioning

From Wikipedia, the free encyclopedia
This article is about cooling of air. For the Curved Air album, see Air Conditioning (album). For a similar device capable of both cooling and heating, see Heat pump.
"a/c" redirects here. For the abbreviation used in banking and book-keeping, see Account (disambiguation). For other uses, see AC.
There are various types of air conditioners. Popular examples include: Window-mounted air conditioner (China, 2023); Ceiling-mounted cassette air conditioner (China, 2023); Wall-mounted air conditioner (Japan, 2020); Ceiling-mounted console (Also called ceiling suspended) air conditioner (China, 2023); and portable air conditioner (Vatican City, 2018).

Air conditioning, often abbreviated as A/C (US) or air con (UK),[1] is the process of removing heat from an enclosed space to achieve a more comfortable interior temperature and in some cases also controlling the humidity of internal air. Air conditioning can be achieved using a mechanical 'air conditioner' or through other methods, including passive cooling and ventilative cooling.[2][3] Air conditioning is a member of a family of systems and techniques that provide heating, ventilation, and air conditioning (HVAC).[4] Heat pumps are similar in many ways to air conditioners but use a reversing valve, allowing them to both heat and cool an enclosed space.[5]

Air conditioners, which typically use vapor-compression refrigeration, range in size from small units used in vehicles or single rooms to massive units that can cool large buildings.[6] Air source heat pumps, which can be used for heating as well as cooling, are becoming increasingly common in cooler climates.

Air conditioners can reduce mortality rates due to higher temperature.[7] According to the International Energy Agency (IEA) 1.6 billion air conditioning units were used globally in 2016.[8] The United Nations called for the technology to be made more sustainable to mitigate climate change and for the use of alternatives, like passive cooling, evaporative cooling, selective shading, windcatchers, and better thermal insulation.

History

[edit]

Air conditioning dates back to prehistory.[9] Double-walled living quarters, with a gap between the two walls to encourage air flow, were found in the ancient city of Hamoukar, in modern Syria.[10] Ancient Egyptian buildings also used a wide variety of passive air-conditioning techniques.[11] These became widespread from the Iberian Peninsula through North Africa, the Middle East, and Northern India.[12]

Passive techniques remained widespread until the 20th century when they fell out of fashion and were replaced by powered air conditioning. Using information from engineering studies of traditional buildings, passive techniques are being revived and modified for 21st-century architectural designs.[13][12]

An array of air conditioner condenser units outside a commercial office building

Air conditioners allow the building's indoor environment to remain relatively constant, largely independent of changes in external weather conditions and internal heat loads. They also enable deep plan buildings to be created and have allowed people to live comfortably in hotter parts of the world.[14]

Development

[edit]

Preceding discoveries

[edit]

In 1558, Giambattista della Porta described a method of chilling ice to temperatures far below its freezing point by mixing it with potassium nitrate (then called "nitre") in his popular science book Natural Magic.[15][16][17] In 1620, Cornelis Drebbel demonstrated "Turning Summer into Winter" for James I of England, chilling part of the Great Hall of Westminster Abbey with an apparatus of troughs and vats.[18] Drebbel's contemporary Francis Bacon, like della Porta a believer in science communication, may not have been present at the demonstration, but in a book published later the same year, he described it as "experiment of artificial freezing" and said that "Nitre (or rather its spirit) is very cold, and hence nitre or salt when added to snow or ice intensifies the cold of the latter, the nitre by adding to its cold, but the salt by supplying activity to the cold of the snow."[15]

In 1758, Benjamin Franklin and John Hadley, a chemistry professor at the University of Cambridge, conducted experiments applying the principle of evaporation as a means to cool an object rapidly. Franklin and Hadley confirmed that the evaporation of highly volatile liquids (such as alcohol and ether) could be used to drive down the temperature of an object past the freezing point of water. They experimented with the bulb of a mercury-in-glass thermometer as their object. They used a bellows to speed up the evaporation. They lowered the temperature of the thermometer bulb down to −14 °C (7 °F) while the ambient temperature was 18 °C (64 °F). Franklin noted that soon after they passed the freezing point of water 0 °C (32 °F), a thin film of ice formed on the surface of the thermometer's bulb and that the ice mass was about 6 mm (1⁄4 in) thick when they stopped the experiment upon reaching −14 °C (7 °F). Franklin concluded: "From this experiment, one may see the possibility of freezing a man to death on a warm summer's day."[19]

The 19th century included many developments in compression technology. In 1820, English scientist and inventor Michael Faraday discovered that compressing and liquefying ammonia could chill air when the liquefied ammonia was allowed to evaporate.[20] In 1842, Florida physician John Gorrie used compressor technology to create ice, which he used to cool air for his patients in his hospital in Apalachicola, Florida. He hoped to eventually use his ice-making machine to regulate the temperature of buildings.[20][21] He envisioned centralized air conditioning that could cool entire cities. Gorrie was granted a patent in 1851,[22] but following the death of his main backer, he was not able to realize his invention.[23] In 1851, James Harrison created the first mechanical ice-making machine in Geelong, Australia, and was granted a patent for an ether vapor-compression refrigeration system in 1855 that produced three tons of ice per day.[24] In 1860, Harrison established a second ice company. He later entered the debate over competing against the American advantage of ice-refrigerated beef sales to the United Kingdom.[24]

First devices

[edit]
Willis Carrier, who is credited with building the first modern electrical air conditioning unit

Electricity made the development of effective units possible. In 1901, American inventor Willis H. Carrier built what is considered the first modern electrical air conditioning unit.[25][26][27][28] In 1902, he installed his first air-conditioning system, in the Sackett-Wilhelms Lithographing & Publishing Company in Brooklyn, New York.[29] His invention controlled both the temperature and humidity, which helped maintain consistent paper dimensions and ink alignment at the printing plant. Later, together with six other employees, Carrier formed The Carrier Air Conditioning Company of America, a business that in 2020 employed 53,000 people and was valued at $18.6 billion.[30][31]

In 1906, Stuart W. Cramer of Charlotte, North Carolina, was exploring ways to add moisture to the air in his textile mill. Cramer coined the term "air conditioning" in a patent claim which he filed that year, where he suggested that air conditioning was analogous to "water conditioning", then a well-known process for making textiles easier to process.[32] He combined moisture with ventilation to "condition" and change the air in the factories; thus, controlling the humidity that is necessary in textile plants. Willis Carrier adopted the term and incorporated it into the name of his company.[33]

Domestic air conditioning soon took off. In 1914, the first domestic air conditioning was installed in Minneapolis in the home of Charles Gilbert Gates. It is, however, possible that the considerable device (c. 2.1 m × 1.8 m × 6.1 m; 7 ft × 6 ft × 20 ft) was never used, as the house remained uninhabited[20] (Gates had already died in October 1913.)

In 1931, H.H. Schultz and J.Q. Sherman developed what would become the most common type of individual room air conditioner: one designed to sit on a window ledge. The units went on sale in 1932 at US$10,000 to $50,000 (the equivalent of $200,000 to $1,200,000 in 2024.)[20] A year later, the first air conditioning systems for cars were offered for sale.[34] Chrysler Motors introduced the first practical semi-portable air conditioning unit in 1935,[35] and Packard became the first automobile manufacturer to offer an air conditioning unit in its cars in 1939.[36]

Further development

[edit]

Innovations in the latter half of the 20th century allowed more ubiquitous air conditioner use. In 1945, Robert Sherman of Lynn, Massachusetts, invented a portable, in-window air conditioner that cooled, heated, humidified, dehumidified, and filtered the air.[37] The first inverter air conditioners were released in 1980–1981.[38][39]

In 1954, Ned Cole, a 1939 architecture graduate from the University of Texas at Austin, developed the first experimental "suburb" with inbuilt air conditioning in each house. 22 homes were developed on a flat, treeless track in northwest Austin, Texas, and the community was christened the 'Austin Air-Conditioned Village.' The residents were subjected to a year-long study of the effects of air conditioning led by the nation’s premier air conditioning companies, builders, and social scientists. In addition, researchers from UT’s Health Service and Psychology Department studied the effects on the "artificially cooled humans." One of the more amusing discoveries was that each family reported being troubled with scorpions, the leading theory being that scorpions sought cool, shady places. Other reported changes in lifestyle were that mothers baked more, families ate heavier foods, and they were more apt to choose hot drinks.[40][41]

Air conditioner adoption tends to increase above around $10,000 annual household income in warmer areas.[42] Global GDP growth explains around 85% of increased air condition adoption by 2050, while the remaining 15% can be explained by climate change.[42]

As of 2016 an estimated 1.6 billion air conditioning units were used worldwide, with over half of them in China and USA, and a total cooling capacity of 11,675 gigawatts.[8][43] The International Energy Agency predicted in 2018 that the number of air conditioning units would grow to around 4 billion units by 2050 and that the total cooling capacity would grow to around 23,000 GW, with the biggest increases in India and China.[8] Between 1995 and 2004, the proportion of urban households in China with air conditioners increased from 8% to 70%.[44] As of 2015, nearly 100 million homes, or about 87% of US households, had air conditioning systems.[45] In 2019, it was estimated that 90% of new single-family homes constructed in the US included air conditioning (ranging from 99% in the South to 62% in the West).[46][47]

Operation

[edit]

Operating principles

[edit]
A simple stylized diagram of the refrigeration cycle: 1) condensing coil, 2) expansion valve, 3) evaporator coil, 4) compressor

Cooling in traditional air conditioner systems is accomplished using the vapor-compression cycle, which uses a refrigerant's forced circulation and phase change between gas and liquid to transfer heat.[48][49] The vapor-compression cycle can occur within a unitary, or packaged piece of equipment; or within a chiller that is connected to terminal cooling equipment (such as a fan coil unit in an air handler) on its evaporator side and heat rejection equipment such as a cooling tower on its condenser side. An air source heat pump shares many components with an air conditioning system, but includes a reversing valve, which allows the unit to be used to heat as well as cool a space.[50]

Air conditioning equipment will reduce the absolute humidity of the air processed by the system if the surface of the evaporator coil is significantly cooler than the dew point of the surrounding air. An air conditioner designed for an occupied space will typically achieve a 30% to 60% relative humidity in the occupied space.[51]

Most modern air-conditioning systems feature a dehumidification cycle during which the compressor runs. At the same time, the fan is slowed to reduce the evaporator temperature and condense more water. A dehumidifier uses the same refrigeration cycle but incorporates both the evaporator and the condenser into the same air path; the air first passes over the evaporator coil, where it is cooled[52] and dehumidified before passing over the condenser coil, where it is warmed again before it is released back into the room.[citation needed]

Free cooling can sometimes be selected when the external air is cooler than the internal air. Therefore, the compressor does not need to be used, resulting in high cooling efficiencies for these times. This may also be combined with seasonal thermal energy storage.[53]

Heating

[edit]
Main article: Heat pump

Some air conditioning systems can reverse the refrigeration cycle and act as an air source heat pump, thus heating instead of cooling the indoor environment. They are also commonly referred to as "reverse cycle air conditioners". The heat pump is significantly more energy-efficient than electric resistance heating, because it moves energy from air or groundwater to the heated space and the heat from purchased electrical energy. When the heat pump is in heating mode, the indoor evaporator coil switches roles and becomes the condenser coil, producing heat. The outdoor condenser unit also switches roles to serve as the evaporator and discharges cold air (colder than the ambient outdoor air).

Most air source heat pumps become less efficient in outdoor temperatures lower than 4 °C or 40 °F.[54] This is partly because ice forms on the outdoor unit's heat exchanger coil, which blocks air flow over the coil. To compensate for this, the heat pump system must temporarily switch back into the regular air conditioning mode to switch the outdoor evaporator coil back to the condenser coil, to heat up and defrost. Therefore, some heat pump systems will have electric resistance heating in the indoor air path that is activated only in this mode to compensate for the temporary indoor air cooling, which would otherwise be uncomfortable in the winter.

Newer models have improved cold-weather performance, with efficient heating capacity down to −14 °F (−26 °C).[55][54][56] However, there is always a chance that the humidity that condenses on the heat exchanger of the outdoor unit could freeze, even in models that have improved cold-weather performance, requiring a defrosting cycle to be performed.

The icing problem becomes much more severe with lower outdoor temperatures, so heat pumps are sometimes installed in tandem with a more conventional form of heating, such as an electrical heater, a natural gas, heating oil, or wood-burning fireplace or central heating, which is used instead of or in addition to the heat pump during harsher winter temperatures. In this case, the heat pump is used efficiently during milder temperatures, and the system is switched to the conventional heat source when the outdoor temperature is lower.

Performance

[edit]

The coefficient of performance (COP) of an air conditioning system is a ratio of useful heating or cooling provided to the work required.[57][58] Higher COPs equate to lower operating costs. The COP usually exceeds 1; however, the exact value is highly dependent on operating conditions, especially absolute temperature and relative temperature between sink and system, and is often graphed or averaged against expected conditions.[59] Air conditioner equipment power in the U.S. is often described in terms of "tons of refrigeration", with each approximately equal to the cooling power of one short ton (2,000 pounds (910 kg) of ice melting in a 24-hour period. The value is equal to 12,000 BTUIT per hour, or 3,517 watts.[60] Residential central air systems are usually from 1 to 5 tons (3.5 to 18 kW) in capacity.[citation needed]

The efficiency of air conditioners is often rated by the seasonal energy efficiency ratio (SEER), which is defined by the Air Conditioning, Heating and Refrigeration Institute in its 2008 standard AHRI 210/240, Performance Rating of Unitary Air-Conditioning and Air-Source Heat Pump Equipment.[61] A similar standard is the European seasonal energy efficiency ratio (ESEER).[citation needed]

Efficiency is strongly affected by the humidity of the air to be cooled. Dehumidifying the air before attempting to cool it can reduce subsequent cooling costs by as much as 90 percent. Thus, reducing dehumidifying costs can materially affect overall air conditioning costs.[62]

Control system

[edit]

Wireless remote control

[edit]
Main articles: Remote control and Infrared blaster
A wireless remote controller
The infrared transmitting LED on the remote
The infrared receiver on the air conditioner

This type of controller uses an infrared LED to relay commands from a remote control to the air conditioner. The output of the infrared LED (like that of any infrared remote) is invisible to the human eye because its wavelength is beyond the range of visible light (940 nm). This system is commonly used on mini-split air conditioners because it is simple and portable. Some window and ducted central air conditioners uses it as well.

Wired controller

[edit]
Main article: Thermostat
Several wired controllers (Indonesia, 2024)

A wired controller, also called a "wired thermostat," is a device that controls an air conditioner by switching heating or cooling on or off. It uses different sensors to measure temperatures and actuate control operations. Mechanical thermostats commonly use bimetallic strips, converting a temperature change into mechanical displacement, to actuate control of the air conditioner. Electronic thermostats, instead, use a thermistor or other semiconductor sensor, processing temperature change as electronic signals to control the air conditioner.

These controllers are usually used in hotel rooms because they are permanently installed into a wall and hard-wired directly into the air conditioner unit, eliminating the need for batteries.

Types

[edit]
TypesTypical Capacity*Air supplyMountingTypical application
Mini-splitsmall – largeDirectWallResidential
Windowvery small – smallDirectWindowResidential
Portablevery small – smallDirect / DuctedFloorResidential, remote areas
Ducted (individual)small – very largeDuctedCeilingResidential, commercial
Ducted (central)medium – very largeDuctedCeilingResidential, commercial
Ceiling suspendedmedium – largeDirectCeilingCommercial
Cassettemedium – largeDirect / DuctedCeilingCommercial
Floor standingmedium – largeDirect / DuctedFloorCommercial
Packagedvery largeDirect / DuctedFloorCommercial
Packaged RTU (Rooftop Unit)very largeDuctedRooftopCommercial

* where the typical capacity is in kilowatt as follows:

  • very small: <1.5 kW
  • small: 1.5–3.5 kW
  • medium: 4.2–7.1 kW
  • large: 7.2–14 kW
  • very large: >14 kW

Mini-split and multi-split systems

[edit]
Evaporator, indoor unit, or terminal, side of a ductless split-type air conditioner

Ductless systems (often mini-split, though there are now ducted mini-split) typically supply conditioned and heated air to a single or a few rooms of a building, without ducts and in a decentralized manner.[63] Multi-zone or multi-split systems are a common application of ductless systems and allow up to eight rooms (zones or locations) to be conditioned independently from each other, each with its indoor unit and simultaneously from a single outdoor unit.

The first mini-split system was sold in 1961 by Toshiba in Japan, and the first wall-mounted mini-split air conditioner was sold in 1968 in Japan by Mitsubishi Electric, where small home sizes motivated their development. The Mitsubishi model was the first air conditioner with a cross-flow fan.[64][65][66] In 1969, the first mini-split air conditioner was sold in the US.[67] Multi-zone ductless systems were invented by Daikin in 1973, and variable refrigerant flow systems (which can be thought of as larger multi-split systems) were also invented by Daikin in 1982. Both were first sold in Japan.[68] Variable refrigerant flow systems when compared with central plant cooling from an air handler, eliminate the need for large cool air ducts, air handlers, and chillers; instead cool refrigerant is transported through much smaller pipes to the indoor units in the spaces to be conditioned, thus allowing for less space above dropped ceilings and a lower structural impact, while also allowing for more individual and independent temperature control of spaces. The outdoor and indoor units can be spread across the building.[69] Variable refrigerant flow indoor units can also be turned off individually in unused spaces.[citation needed] The lower start-up power of VRF's DC inverter compressors and their inherent DC power requirements also allow VRF solar-powered heat pumps to be run using DC-providing solar panels.

Ducted central systems

[edit]

Split-system central air conditioners consist of two heat exchangers, an outside unit (the condenser) from which heat is rejected to the environment and an internal heat exchanger (the evaporator, or Fan Coil Unit, FCU) with the piped refrigerant being circulated between the two. The FCU is then connected to the spaces to be cooled by ventilation ducts.[70] Floor standing air conditioners are similar to this type of air conditioner but sit within spaces that need cooling.

Central plant cooling

[edit]
See also: Chiller
Industrial air conditioners on top of the shopping mall Passage in Linz, Austria

Large central cooling plants may use intermediate coolant such as chilled water pumped into air handlers or fan coil units near or in the spaces to be cooled which then duct or deliver cold air into the spaces to be conditioned, rather than ducting cold air directly to these spaces from the plant, which is not done due to the low density and heat capacity of air, which would require impractically large ducts. The chilled water is cooled by chillers in the plant, which uses a refrigeration cycle to cool water, often transferring its heat to the atmosphere even in liquid-cooled chillers through the use of cooling towers. Chillers may be air- or liquid-cooled.[71][72]

Portable units

[edit]

A portable system has an indoor unit on wheels connected to an outdoor unit via flexible pipes, similar to a permanently fixed installed unit (such as a ductless split air conditioner).

Hose systems, which can be monoblock or air-to-air, are vented to the outside via air ducts. The monoblock type collects the water in a bucket or tray and stops when full. The air-to-air type re-evaporates the water, discharges it through the ducted hose, and can run continuously. Many but not all portable units draw indoor air and expel it outdoors through a single duct, negatively impacting their overall cooling efficiency.

Many portable air conditioners come with heat as well as a dehumidification function.[73]

Window unit and packaged terminal

[edit]
Through-the-wall PTAC units, University Motor Inn, Philadelphia

The packaged terminal air conditioner (PTAC), through-the-wall, and window air conditioners are similar. These units are installed on a window frame or on a wall opening. The unit usually has an internal partition separating its indoor and outdoor sides, which contain the unit's condenser and evaporator, respectively. PTAC systems may be adapted to provide heating in cold weather, either directly by using an electric strip, gas, or other heaters, or by reversing the refrigerant flow to heat the interior and draw heat from the exterior air, converting the air conditioner into a heat pump. They may be installed in a wall opening with the help of a special sleeve on the wall and a custom grill that is flush with the wall and window air conditioners can also be installed in a window, but without a custom grill.[74]

Packaged air conditioner

[edit]

Packaged air conditioners (also known as self-contained units)[75][76] are central systems that integrate into a single housing all the components of a split central system, and deliver air, possibly through ducts, to the spaces to be cooled. Depending on their construction they may be outdoors or indoors, on roofs (rooftop units),[77][78] draw the air to be conditioned from inside or outside a building and be water or air-cooled. Often, outdoor units are air-cooled while indoor units are liquid-cooled using a cooling tower.[70][79][80][81][82][83]

Types of compressors

[edit]
Compressor typesCommon applicationsTypical capacityEfficiencyDurabilityRepairability
ReciprocatingRefrigerator, Walk-in freezer, portable air conditionerssmall – largevery low (small capacity)

medium (large capacity)

very lowmedium
Rotary vaneResidential mini splitssmalllowloweasy
ScrollCommercial and central systems, VRFmediummediummediumeasy
Rotary screwCommercial chillermedium – largemediummediumhard
CentrifugalCommercial chillervery largemediumhighhard
Maglev CentrifugalCommercial chillervery largehighvery highvery hard

Reciprocating

[edit]

This compressor consists of a crankcase, crankshaft, piston rod, piston, piston ring, cylinder head and valves. [citation needed]

Scroll

[edit]
Main article: Scroll compressor

This compressor uses two interleaving scrolls to compress the refrigerant.[84] it consists of one fixed and one orbiting scrolls. This type of compressor is more efficient because it has 70 percent less moving parts than a reciprocating compressor. [citation needed]

Screw

[edit]

This compressor use two very closely meshing spiral rotors to compress the gas. The gas enters at the suction side and moves through the threads as the screws rotate. The meshing rotors force the gas through the compressor, and the gas exits at the end of the screws. The working area is the inter-lobe volume between the male and female rotors. It is larger at the intake end, and decreases along the length of the rotors until the exhaust port. This change in volume is the compression. [citation needed]

Capacity modulation technologies

[edit]

There are several ways to modulate the cooling capacity in refrigeration or air conditioning and heating systems. The most common in air conditioning are: on-off cycling, hot gas bypass, use or not of liquid injection, manifold configurations of multiple compressors, mechanical modulation (also called digital), and inverter technology. [citation needed]

Hot gas bypass

[edit]

Hot gas bypass involves injecting a quantity of gas from discharge to the suction side. The compressor will keep operating at the same speed, but due to the bypass, the refrigerant mass flow circulating with the system is reduced, and thus the cooling capacity. This naturally causes the compressor to run uselessly during the periods when the bypass is operating. The turn down capacity varies between 0 and 100%.[85]

Manifold configurations

[edit]

Several compressors can be installed in the system to provide the peak cooling capacity. Each compressor can run or not in order to stage the cooling capacity of the unit. The turn down capacity is either 0/33/66 or 100% for a trio configuration and either 0/50 or 100% for a tandem.[citation needed]

Mechanically modulated compressor

[edit]

This internal mechanical capacity modulation is based on periodic compression process with a control valve, the two scroll set move apart stopping the compression for a given time period. This method varies refrigerant flow by changing the average time of compression, but not the actual speed of the motor. Despite an excellent turndown ratio – from 10 to 100% of the cooling capacity, mechanically modulated scrolls have high energy consumption as the motor continuously runs.[citation needed]

Variable-speed compressor

[edit]
Main article: Inverter compressor

This system uses a variable-frequency drive (also called an Inverter) to control the speed of the compressor. The refrigerant flow rate is changed by the change in the speed of the compressor. The turn down ratio depends on the system configuration and manufacturer. It modulates from 15 or 25% up to 100% at full capacity with a single inverter from 12 to 100% with a hybrid tandem. This method is the most efficient way to modulate an air conditioner's capacity. It is up to 58% more efficient than a fixed speed system.[citation needed]

Impact

[edit]

Health effects

[edit]
Rooftop condenser unit fitted on top of an Osaka Municipal Subway 10 series subway carriage. Air conditioning has become increasingly prevalent on public transport vehicles as a form of climate control, and to ensure passenger comfort and drivers' occupational safety and health.

In hot weather, air conditioning can prevent heat stroke, dehydration due to excessive sweating, electrolyte imbalance, kidney failure, and other issues due to hyperthermia.[8][86] Heat waves are the most lethal type of weather phenomenon in the United States.[87][88] A 2020 study found that areas with lower use of air conditioning correlated with higher rates of heat-related mortality and hospitalizations.[89] The August 2003 France heatwave resulted in approximately 15,000 deaths, where 80% of the victims were over 75 years old. In response, the French government required all retirement homes to have at least one air-conditioned room at 25 °C (77 °F) per floor during heatwaves.[8]

Air conditioning (including filtration, humidification, cooling and disinfection) can be used to provide a clean, safe, hypoallergenic atmosphere in hospital operating rooms and other environments where proper atmosphere is critical to patient safety and well-being. It is sometimes recommended for home use by people with allergies, especially mold.[90][91] However, poorly maintained water cooling towers can promote the growth and spread of microorganisms such as Legionella pneumophila, the infectious agent responsible for Legionnaires' disease. As long as the cooling tower is kept clean (usually by means of a chlorine treatment), these health hazards can be avoided or reduced. The state of New York has codified requirements for registration, maintenance, and testing of cooling towers to protect against Legionella.[92]

Economic effects

[edit]

First designed to benefit targeted industries such as the press as well as large factories, the invention quickly spread to public agencies and administrations with studies with claims of increased productivity close to 24% in places equipped with air conditioning.[93]

Air conditioning caused various shifts in demography, notably that of the United States starting from the 1970s. In the US, the birth rate was lower in the spring than during other seasons until the 1970s but this difference then declined since then.[94] As of 2007, the Sun Belt contained 30% of the total US population while it was inhabited by 24% of Americans at the beginning of the 20th century.[95] Moreover, the summer mortality rate in the US, which had been higher in regions subject to a heat wave during the summer, also evened out.[7]

The spread of the use of air conditioning acts as a main driver for the growth of global demand of electricity.[96] According to a 2018 report from the International Energy Agency (IEA), it was revealed that the energy consumption for cooling in the United States, involving 328 million Americans, surpasses the combined energy consumption of 4.4 billion people in Africa, Latin America, the Middle East, and Asia (excluding China).[8] A 2020 survey found that an estimated 88% of all US households use AC, increasing to 93% when solely looking at homes built between 2010 and 2020.[97]

Environmental effects

[edit]
Air conditioner farm in the facade of a building in Singapore

Space cooling including air conditioning accounted globally for 2021 terawatt-hours of energy usage in 2016 with around 99% in the form of electricity, according to a 2018 report on air-conditioning efficiency by the International Energy Agency.[8] The report predicts an increase of electricity usage due to space cooling to around 6200 TWh by 2050,[8][98] and that with the progress currently seen, greenhouse gas emissions attributable to space cooling will double: 1,135 million tons (2016) to 2,070 million tons.[8] There is some push to increase the energy efficiency of air conditioners. United Nations Environment Programme (UNEP) and the IEA found that if air conditioners could be twice as effective as now, 460 billion tons of GHG could be cut over 40 years.[99] The UNEP and IEA also recommended legislation to decrease the use of hydrofluorocarbons, better building insulation, and more sustainable temperature-controlled food supply chains going forward.[99]

Refrigerants have also caused and continue to cause serious environmental issues, including ozone depletion and climate change, as several countries have not yet ratified the Kigali Amendment to reduce the consumption and production of hydrofluorocarbons.[100] CFCs and HCFCs refrigerants such as R-12 and R-22, respectively, used within air conditioners have caused damage to the ozone layer,[101] and hydrofluorocarbon refrigerants such as R-410A and R-404A, which were designed to replace CFCs and HCFCs, are instead exacerbating climate change.[102] Both issues happen due to the venting of refrigerant to the atmosphere, such as during repairs. HFO refrigerants, used in some if not most new equipment, solve both issues with an ozone damage potential (ODP) of zero and a much lower global warming potential (GWP) in the single or double digits vs. the three or four digits of hydrofluorocarbons.[103]

Hydrofluorocarbons would have raised global temperatures by around 0.3–0.5 °C (0.5–0.9 °F) by 2100 without the Kigali Amendment. With the Kigali Amendment, the increase of global temperatures by 2100 due to hydrofluorocarbons is predicted to be around 0.06 °C (0.1 °F).[104]

Alternatives to continual air conditioning include passive cooling, passive solar cooling, natural ventilation, operating shades to reduce solar gain, using trees, architectural shades, windows (and using window coatings) to reduce solar gain.[citation needed]

Social effects

[edit]

Socioeconomic groups with a household income below around $10,000 tend to have a low air conditioning adoption,[42] which worsens heat-related mortality.[7] The lack of cooling can be hazardous, as areas with lower use of air conditioning correlate with higher rates of heat-related mortality and hospitalizations.[89] Premature mortality in NYC is projected to grow between 47% and 95% in 30 years, with lower-income and vulnerable populations most at risk.[89] Studies on the correlation between heat-related mortality and hospitalizations and living in low socioeconomic locations can be traced in Phoenix, Arizona,[105] Hong Kong,[106] China,[106] Japan,[107] and Italy.[108][109] Additionally, costs concerning health care can act as another barrier, as the lack of private health insurance during a 2009 heat wave in Australia, was associated with heat-related hospitalization.[109]

Disparities in socioeconomic status and access to air conditioning are connected by some to institutionalized racism, which leads to the association of specific marginalized communities with lower economic status, poorer health, residing in hotter neighborhoods, engaging in physically demanding labor, and experiencing limited access to cooling technologies such as air conditioning.[109] A study overlooking Chicago, Illinois, Detroit, and Michigan found that black households were half as likely to have central air conditioning units when compared to their white counterparts.[110] Especially in cities, Redlining creates heat islands, increasing temperatures in certain parts of the city.[109] This is due to materials heat-absorbing building materials and pavements and lack of vegetation and shade coverage.[111] There have been initiatives that provide cooling solutions to low-income communities, such as public cooling spaces.[8][111]

Other techniques

[edit]

Buildings designed with passive air conditioning are generally less expensive to construct and maintain than buildings with conventional HVAC systems with lower energy demands.[112] While tens of air changes per hour, and cooling of tens of degrees, can be achieved with passive methods, site-specific microclimate must be taken into account, complicating building design.[12]

Many techniques can be used to increase comfort and reduce the temperature in buildings. These include evaporative cooling, selective shading, wind, thermal convection, and heat storage.[113]

Passive ventilation

[edit]
This section is an excerpt from Passive ventilation.[edit]
The ventilation system of a regular earthship
Dogtrot houses are designed to maximise natural ventilation.
A roof turbine ventilator, colloquially known as a 'Whirly Bird', is an application of wind driven ventilation.

Passive ventilation is the process of supplying air to and removing air from an indoor space without using mechanical systems. It refers to the flow of external air to an indoor space as a result of pressure differences arising from natural forces.

There are two types of natural ventilation occurring in buildings: wind driven ventilation and buoyancy-driven ventilation. Wind driven ventilation arises from the different pressures created by wind around a building or structure, and openings being formed on the perimeter which then permit flow through the building. Buoyancy-driven ventilation occurs as a result of the directional buoyancy force that results from temperature differences between the interior and exterior.[114]

Since the internal heat gains which create temperature differences between the interior and exterior are created by natural processes, including the heat from people, and wind effects are variable, naturally ventilated buildings are sometimes called "breathing buildings".

Passive cooling

[edit]
This section is an excerpt from Passive cooling.[edit]
A traditional Iranian solar cooling design using a wind tower

Passive cooling is a building design approach that focuses on heat gain control and heat dissipation in a building in order to improve the indoor thermal comfort with low or no energy consumption.[115][116] This approach works either by preventing heat from entering the interior (heat gain prevention) or by removing heat from the building (natural cooling).[117]

Natural cooling utilizes on-site energy, available from the natural environment, combined with the architectural design of building components (e.g. building envelope), rather than mechanical systems to dissipate heat.[118] Therefore, natural cooling depends not only on the architectural design of the building but on how the site's natural resources are used as heat sinks (i.e. everything that absorbs or dissipates heat). Examples of on-site heat sinks are the upper atmosphere (night sky), the outdoor air (wind), and the earth/soil.

Passive cooling is an important tool for design of buildings for climate change adaptation – reducing dependency on energy-intensive air conditioning in warming environments.[119][120]
A pair of short windcatchers (malqaf) used in traditional architecture; wind is forced down on the windward side and leaves on the leeward side (cross-ventilation). In the absence of wind, the circulation can be driven with evaporative cooling in the inlet (which is also designed to catch dust). In the center, a shuksheika (roof lantern vent), used to shade the qa'a below while allowing hot air rise out of it (stack effect).[11]

Daytime radiative cooling

[edit]
Passive daytime radiative cooling (PDRC) surfaces are high in solar reflectance and heat emittance, cooling with zero energy use or pollution.[121]

Passive daytime radiative cooling (PDRC) surfaces reflect incoming solar radiation and heat back into outer space through the infrared window for cooling during the daytime. Daytime radiative cooling became possible with the ability to suppress solar heating using photonic structures, which emerged through a study by Raman et al. (2014).[122] PDRCs can come in a variety of forms, including paint coatings and films, that are designed to be high in solar reflectance and thermal emittance.[121][123]

PDRC applications on building roofs and envelopes have demonstrated significant decreases in energy consumption and costs.[123] In suburban single-family residential areas, PDRC application on roofs can potentially lower energy costs by 26% to 46%.[124] PDRCs are predicted to show a market size of ~$27 billion for indoor space cooling by 2025 and have undergone a surge in research and development since the 2010s.[125][126]

Fans

[edit]
Main article: Ceiling fan

Hand fans have existed since prehistory. Large human-powered fans built into buildings include the punkah.

The 2nd-century Chinese inventor Ding Huan of the Han dynasty invented a rotary fan for air conditioning, with seven wheels 3 m (10 ft) in diameter and manually powered by prisoners.[127]: 99, 151, 233 In 747, Emperor Xuanzong (r. 712–762) of the Tang dynasty (618–907) had the Cool Hall (Liang Dian 涼殿) built in the imperial palace, which the Tang Yulin describes as having water-powered fan wheels for air conditioning as well as rising jet streams of water from fountains. During the subsequent Song dynasty (960–1279), written sources mentioned the air conditioning rotary fan as even more widely used.[127]: 134, 151

Thermal buffering

[edit]

In areas that are cold at night or in winter, heat storage is used. Heat may be stored in earth or masonry; air is drawn past the masonry to heat or cool it.[13]

In areas that are below freezing at night in winter, snow and ice can be collected and stored in ice houses for later use in cooling.[13] This technique is over 3,700 years old in the Middle East.[128] Harvesting outdoor ice during winter and transporting and storing for use in summer was practiced by wealthy Europeans in the early 1600s,[15] and became popular in Europe and the Americas towards the end of the 1600s.[129] This practice was replaced by mechanical compression-cycle icemakers.

Evaporative cooling

[edit]
Main article: Evaporative cooler
An evaporative cooler

In dry, hot climates, the evaporative cooling effect may be used by placing water at the air intake, such that the draft draws air over water and then into the house. For this reason, it is sometimes said that the fountain, in the architecture of hot, arid climates, is like the fireplace in the architecture of cold climates.[11] Evaporative cooling also makes the air more humid, which can be beneficial in a dry desert climate.[130]

Evaporative coolers tend to feel as if they are not working during times of high humidity, when there is not much dry air with which the coolers can work to make the air as cool as possible for dwelling occupants. Unlike other types of air conditioners, evaporative coolers rely on the outside air to be channeled through cooler pads that cool the air before it reaches the inside of a house through its air duct system; this cooled outside air must be allowed to push the warmer air within the house out through an exhaust opening such as an open door or window.[131]

See also

[edit]

References

[edit]
  1. ^ "Air Con". Cambridge Dictionary. Archived from the original on May 3, 2022. Retrieved January 6, 2023.
  2. ^ Dissertation Abstracts International: The humanities and social sciences. A. University Microfilms. 2005. p. 3600.
  3. ^ 1993 ASHRAE Handbook: Fundamentals. ASHRAE. 1993. ISBN 978-0-910110-97-6.
  4. ^ Enteria, Napoleon; Sawachi, Takao; Saito, Kiyoshi (January 31, 2023). Variable Refrigerant Flow Systems: Advances and Applications of VRF. Springer Nature. p. 46. ISBN 978-981-19-6833-4.
  5. ^ Agencies, United States Congress House Committee on Appropriations Subcommittee on Dept of the Interior and Related (1988). Department of the Interior and Related Agencies Appropriations for 1989: Testimony of public witnesses, energy programs, Institute of Museum Services, National Endowment for the Arts, National Endowment for the Humanities. U.S. Government Printing Office. p. 629.
  6. ^ "Earth Tubes: Providing the freshest possible air to your building". Earth Rangers Centre for Sustainable Technology Showcase. Archived from the original on January 28, 2021. Retrieved May 12, 2021.
  7. ^ Jump up to:a b c Barreca, Alan; Clay, Karen; Deschenes, Olivier; Greenstone, Michael; Shapiro, Joseph S. (February 2016). "Adapting to Climate Change: The Remarkable Decline in the US Temperature-Mortality Relationship over the Twentieth Century". Journal of Political Economy. 124 (1): 105–159. doi:10.1086/684582.
  8. ^ Jump up to:a b c d e f g h i j International Energy Agency (May 15, 2018). The Future of Cooling - Opportunities for energy-efficient air conditioning (PDF) (Report). Archived (PDF) from the original on June 26, 2024. Retrieved July 1, 2024.
  9. ^ Laub, Julian M. (1963). Air Conditioning & Heating Practice. Holt, Rinehart and Winston. p. 367. ISBN 978-0-03-011225-6.
  10. ^ "Air-conditioning found at 'oldest city in the world'". The Independent. June 24, 2000. Archived from the original on December 8, 2023. Retrieved December 9, 2023.
  11. ^ Jump up to:a b c Mohamed, Mady A.A. (January 2010). Lehmann, S.; Waer, H.A.; Al-Qawasmi, J. (eds.). Traditional Ways of Dealing with Climate in Egypt. The Seventh International Conference of Sustainable Architecture and Urban Development (SAUD 2010). Amman, Jordan: The Center for the Study of Architecture in Arab Region (CSAAR Press). pp. 247–266. Archived from the original on May 13, 2021. Retrieved May 12, 2021.
  12. ^ Jump up to:a b c Ford, Brian (September 2001). "Passive downdraught evaporative cooling: principles and practice". Architectural Research Quarterly. 5 (3): 271–280. doi:10.1017/S1359135501001312.
  13. ^ Jump up to:a b c Attia, Shady; Herde, André de (June 22–24, 2009). Designing the Malqaf for Summer Cooling in Low-Rise Housing, an Experimental Study. 26th Conference on Passive and Low Energy Architecture (PLEA2009). Quebec City. Archived from the original on May 13, 2021. Retrieved May 12, 2021 – via ResearchGate.
  14. ^ "Heating, Ventilation and Air-Conditioning Systems, Part of Indoor Air Quality Design Tools for Schools". US EPA. October 17, 2014. Archived from the original on July 5, 2022. Retrieved July 5, 2022.
  15. ^ Jump up to:a b c Shachtman, Tom (1999). "Winter in Summer". Absolute zero and the conquest of cold. Boston: Houghton Mifflin Harcourt. ISBN 978-0395938881. OCLC 421754998. Archived from the original on May 13, 2021. Retrieved May 12, 2021.
  16. ^ Porta, Giambattista Della (1584). Magiae naturalis (PDF). London. LCCN 09023451. Archived (PDF) from the original on May 13, 2021. Retrieved May 12, 2021. In our method I shall observe what our ancestors have said; then I shall show by my own experience, whether they be true or false
  17. ^ Beck, Leonard D. (October 1974). "Things Magical in the collections of the Rare Book and Special Collections Division" (PDF). Library of Congress Quarterly Journal. 31: 208–234. Archived (PDF) from the original on March 24, 2021. Retrieved May 12, 2021.
  18. ^ Laszlo, Pierre (2001). Salt: Grain of Life. Columbia University Press. p. 117. ISBN 978-0231121989. OCLC 785781471. Cornelius Drebbel air conditioning.
  19. ^ Franklin, Benjamin (June 17, 1758). "The Montgomery Family: An historical and photographic perspective". Letter to John Lining. Archived from the original on February 25, 2021. Retrieved May 12, 2021.
  20. ^ Jump up to:a b c d Green, Amanda (January 1, 2015). "The Cool History of the Air Conditioner". Popular Mechanics. Archived from the original on April 10, 2021. Retrieved May 12, 2021.
  21. ^ "John Gorrie". Encyclopædia Britannica. September 29, 2020. Archived from the original on March 13, 2021. Retrieved May 12, 2021.
  22. ^ Gorrie, John "Improved process for the artificial production of ice" U.S. Patent no. 8080 (Issued: May 6, 1851).
  23. ^ Wright, E. Lynne (2009). It Happened in Florida: Remarkable Events That Shaped History. Rowman & Littlefield. pp. 13–. ISBN 978-0762761692.
  24. ^ Jump up to:a b Bruce-Wallace, L. G. (1966). "Harrison, James (1816–1893)". Australian Dictionary of Biography. Vol. 1. Canberra: National Centre of Biography, Australian National University. ISBN 978-0-522-84459-7. ISSN 1833-7538. OCLC 70677943. Retrieved May 12, 2021.
  25. ^ Palermo, Elizabeth (May 1, 2014). "Who Invented Air Conditioning?". livescience.com. Archived from the original on January 16, 2021. Retrieved May 12, 2021.
  26. ^ Varrasi, John (June 6, 2011). "Global Cooling: The History of Air Conditioning". American Society of Mechanical Engineers. Archived from the original on March 8, 2021. Retrieved May 12, 2021.
  27. ^ Simha, R. V. (February 2012). "Willis H Carrier". Resonance. 17 (2): 117–138. doi:10.1007/s12045-012-0014-y. ISSN 0971-8044. S2CID 116582893.
  28. ^ Gulledge III, Charles; Knight, Dennis (February 11, 2016). "Heating, Ventilating, Air-Conditioning, And Refrigerating Engineering". National Institute of Building Sciences. Archived from the original on April 20, 2021. Retrieved May 12, 2021. Though he did not actually invent air-conditioning nor did he take the first documented scientific approach to applying it, Willis Carrier is credited with integrating the scientific method, engineering, and business of this developing technology and creating the industry we know today as air-conditioning.
  29. ^ "Willis Carrier – 1876–1902". Carrier Global. Archived from the original on February 27, 2021. Retrieved May 12, 2021.
  30. ^ "Carrier Reports First Quarter 2020 Earnings". Carrier Global (Press release). May 8, 2020. Archived from the original on January 24, 2021. Retrieved May 12, 2021.
  31. ^ "Carrier Becomes Independent, Publicly Traded Company, Begins Trading on New York Stock Exchange". Carrier Global (Press release). April 3, 2020. Archived from the original on February 25, 2021. Retrieved May 12, 2021.
  32. ^ Cramer, Stuart W. "Humidifying and air conditioning apparatus" U.S. Patent no. 852,823 (filed: April 18, 1906; issued: May 7, 1907).
    • See also: Cramer, Stuart W. (1906) "Recent development in air conditioning" in: Proceedings of the Tenth Annual Convention of the American Cotton Manufacturers Association Held at Asheville, North Carolina May 16–17, 1906. Charlotte, North Carolina, USA: Queen City Publishing Co. pp. 182-211.
  33. ^ US patent US808897A, Carrier, Willis H., "Apparatus for treating air", published January 2, 1906, issued January 2, 1906 and Buffalo Forge Company"No. 808,897 Patented Jan. 2, 1906: H. W. Carrier: Apparatus for Treating Air" (PDF). Archived (PDF) from the original on December 5, 2019. Retrieved May 12, 2021.
  34. ^ "First Air-Conditioned Auto". Popular Science. Vol. 123, no. 5. November 1933. p. 30. ISSN 0161-7370. Archived from the original on April 26, 2021. Retrieved May 12, 2021.
  35. ^ "Room-size air conditioner fits under window sill". Popular Mechanics. Vol. 63, no. 6. June 1935. p. 885. ISSN 0032-4558. Archived from the original on November 22, 2016. Retrieved May 12, 2021.
  36. ^ "Michigan Fast Facts and Trivia". 50states.com. Archived from the original on June 18, 2017. Retrieved May 12, 2021.
  37. ^ US patent US2433960A, Sherman, Robert S., "Air conditioning apparatus", published January 6, 1948, issued January 6, 1948
  38. ^ "IEEE milestones (39) Inverter Air Conditioners, 1980–1981" (PDF). March 2021. Archived (PDF) from the original on January 21, 2024. Retrieved February 9, 2024.
  39. ^ "Inverter Air Conditioners, 1980–1981 IEEE Milestone Celebration Ceremony" (PDF). March 16, 2021. Archived (PDF) from the original on January 21, 2024. Retrieved February 9, 2024.
  40. ^ Seale, Avrel (August 7, 2023). "Texas alumnus and his alma mater central to air-conditioned homes". UT News. Retrieved November 13, 2024.
  41. ^ "Air Conditioned Village". Atlas Obscura. Retrieved November 13, 2024.
  42. ^ Jump up to:a b c Davis, Lucas; Gertler, Paul; Jarvis, Stephen; Wolfram, Catherine (July 2021). "Air conditioning and global inequality". Global Environmental Change. 69: 102299. Bibcode:2021GEC....6902299D. doi:10.1016/j.gloenvcha.2021.102299.
  43. ^ Pierre-Louis, Kendra (May 15, 2018). "The World Wants Air-Conditioning. That Could Warm the World". The New York Times. Archived from the original on February 16, 2021. Retrieved May 12, 2021.
  44. ^ Carroll, Rory (October 26, 2015). "How America became addicted to air conditioning". The Guardian. Los Angeles. Archived from the original on March 13, 2021. Retrieved May 12, 2021.
  45. ^ Lester, Paul (July 20, 2015). "History of Air Conditioning". United States Department of Energy. Archived from the original on June 5, 2020. Retrieved May 12, 2021.
  46. ^ Cornish, Cheryl; Cooper, Stephen; Jenkins, Salima. Characteristics of New Housing (Report). United States Census Bureau. Archived from the original on April 11, 2021. Retrieved May 12, 2021.
  47. ^ "Central Air Conditioning Buying Guide". Consumer Reports. March 3, 2021. Archived from the original on May 9, 2021. Retrieved May 12, 2021.
  48. ^ Petchers, Neil (2003). Combined Heating, Cooling & Power Handbook: Technologies & Applications : an Integrated Approach to Energy Resource Optimization. The Fairmont Press. p. 737. ISBN 978-0-88173-433-1.
  49. ^ Krarti, Moncef (December 1, 2020). Energy Audit of Building Systems: An Engineering Approach, Third Edition. CRC Press. p. 370. ISBN 978-1-000-25967-4.
  50. ^ "What is a Reversing Valve". Samsung India. Archived from the original on February 22, 2019. Retrieved May 12, 2021.
  51. ^ "Humidity and Comfort" (PDF). DriSteem. Archived from the original (PDF) on May 16, 2018. Retrieved May 12, 2021.
  52. ^ Perryman, Oliver (April 19, 2021). "Dehumidifier vs Air Conditioning". Dehumidifier Critic. Archived from the original on May 13, 2021. Retrieved May 12, 2021.
  53. ^ Snijders, Aart L. (July 30, 2008). "Aquifer Thermal Energy Storage (ATES) Technology Development and Major Applications in Europe" (PDF). Toronto and Region Conservation Authority. Arnhem: IFTech International. Archived (PDF) from the original on March 8, 2021. Retrieved May 12, 2021.
  54. ^ Jump up to:a b "Cold Climate Air Source Heat Pump" (PDF). Minnesota Department of Commerce, Division of Energy Resources. Archived (PDF) from the original on January 2, 2022. Retrieved March 29, 2022.
  55. ^ "Even in Frigid Temperatures, Air-Source Heat Pumps Keep Homes Warm From Alaska Coast to U.S. Mass Market". nrel.gov. Archived from the original on April 10, 2022. Retrieved March 29, 2022.
  56. ^ "Heat Pumps: A Practical Solution for Cold Climates". RMI. December 10, 2020. Archived from the original on March 31, 2022. Retrieved March 28, 2022.
  57. ^ "TEM Instruction Sheet" (PDF). TE Technology. March 14, 2012. Archived from the original (PDF) on January 24, 2013. Retrieved May 12, 2021.
  58. ^ "Coefficient of Performance (COP) heat pumps". Grundfos. November 18, 2020. Archived from the original on May 3, 2021. Retrieved May 12, 2021.
  59. ^ "Unpotted HP-199-1.4-0.8 at a hot-side temperature of 25 °C" (PDF). TE Technology. Archived from the original (PDF) on January 7, 2009. Retrieved February 9, 2024.
  60. ^ Newell, David B.; Tiesinga, Eite, eds. (August 2019). The International System of Units (SI) (PDF). National Institute of Standards and Technology. doi:10.6028/NIST.SP.330-2019. Archived (PDF) from the original on April 22, 2021. Retrieved May 13, 2021.
  61. ^ ANSI/AHRI 210/240-2008: 2008 Standard for Performance Rating of Unitary Air-Conditioning & Air-Source Heat Pump Equipment (PDF). Air Conditioning, Heating and Refrigeration Institute. 2012. Archived from the original on March 29, 2018. Retrieved May 13, 2021.
  62. ^ Baraniuk, Chris. "Cutting-Edge Technology Could Massively Reduce the Amount of Energy Used for Air Conditioning". Wired. ISSN 1059-1028. Retrieved July 18, 2024.
  63. ^ "M-Series Contractor Guide" (PDF). Mitsubishipro.com. p. 19. Archived (PDF) from the original on March 18, 2021. Retrieved May 12, 2021.
  64. ^ "ć‚Øć‚¢ć‚³ćƒ³ć®ę­“å²ćØćƒ’ćƒŸćƒ„ | čŖæć¹ć‚ˆć†å®¶é›»ćØēœć‚Øćƒ | ć‚­ćƒƒć‚ŗē‰ˆ ēœć‚Øćƒå®¶é›» de ć‚¹ćƒžćƒ¼ćƒˆćƒ©ć‚¤ćƒ•ļ¼ˆäø€čˆ¬č²”å›£ę³•äŗŗ å®¶é›»č£½å“å”ä¼šļ¼‰ å­¦ć¼ć†ļ¼ć‚¹ćƒžćƒ¼ćƒˆćƒ©ć‚¤ćƒ•". shouene-kaden.net. Archived from the original on September 7, 2022. Retrieved January 21, 2024.
  65. ^ "Air conditioner | History". Toshiba Carrier. April 2016. Archived from the original on March 9, 2021. Retrieved May 12, 2021.
  66. ^ "1920s–1970s | History". Mitsubishi Electric. Archived from the original on March 8, 2021. Retrieved May 12, 2021.
  67. ^ Wagner, Gerry (November 30, 2021). "The Duct Free Zone: History of the Mini Split". HPAC Magazine. Retrieved February 9, 2024.
  68. ^ "History of Daikin Innovation". Daikin. Archived from the original on June 5, 2020. Retrieved May 12, 2021.
  69. ^ Feit, Justin (December 20, 2017). "The Emergence of VRF as a Viable HVAC Option". buildings.com. Archived from the original on December 3, 2020. Retrieved May 12, 2021.
  70. ^ Jump up to:a b "Central Air Conditioning". United States Department of Energy. Archived from the original on January 30, 2021. Retrieved May 12, 2021.
  71. ^ Kreith, Frank; Wang, Shan K.; Norton, Paul (April 20, 2018). Air Conditioning and Refrigeration Engineering. CRC Press. ISBN 978-1-351-46783-4.
  72. ^ Wang, Shan K. (November 7, 2000). Handbook of Air Conditioning and Refrigeration. McGraw-Hill Education. ISBN 978-0-07-068167-5.
  73. ^ Hleborodova, Veronika (August 14, 2018). "Portable Vs Split System Air Conditioning | Pros & Cons". Canstar Blue. Archived from the original on March 9, 2021. Retrieved May 12, 2021.
  74. ^ Kamins, Toni L. (July 15, 2013). "Through-the-Wall Versus PTAC Air Conditioners: A Guide for New Yorkers". Brick Underground. Archived from the original on January 15, 2021. Retrieved May 12, 2021.
  75. ^ "Self-Contained Air Conditioning Systems". Daikin Applied Americas. 2015. Archived from the original on October 30, 2020. Retrieved May 12, 2021.
  76. ^ "LSWU/LSWD Vertical Water-Cooled Self-Contained Unit Engineering Guide" (PDF). Johnson Controls. April 6, 2018. Archived (PDF) from the original on May 13, 2021. Retrieved May 12, 2021.
  77. ^ "Packaged Rooftop Unit" (PDF). Carrier Global. 2016. Archived (PDF) from the original on May 13, 2021. Retrieved May 12, 2021.
  78. ^ "Packaged Rooftop Air Conditioners" (PDF). Trane Technologies. November 2006. Archived (PDF) from the original on May 13, 2021. Retrieved May 12, 2021.
  79. ^ "What is Packaged Air Conditioner? Types of Packged Air Condtioners". Bright Hub Engineering. January 13, 2010. Archived from the original on February 22, 2018. Retrieved May 12, 2021.
  80. ^ Evans, Paul (November 11, 2018). "RTU Rooftop Units explained". The Engineering Mindset. Archived from the original on January 15, 2021. Retrieved May 12, 2021.
  81. ^ "water-cooled – Johnson Supply". studylib.net. 2000. Archived from the original on May 13, 2021. Retrieved May 12, 2021.
  82. ^ "Water Cooled Packaged Air Conditioners" (PDF). Japan: Daikin. May 2, 2003. Archived (PDF) from the original on June 19, 2018. Retrieved May 12, 2021.
  83. ^ "Water Cooled Packaged Unit" (PDF). Daikin. Archived (PDF) from the original on May 13, 2021. Retrieved May 12, 2021.
  84. ^ Lun, Y. H. Venus; Tung, S. L. Dennis (November 13, 2019). Heat Pumps for Sustainable Heating and Cooling. Springer Nature. p. 25. ISBN 978-3-030-31387-6.
  85. ^ Ghanbariannaeeni, Ali; Ghazanfarihashemi, Ghazalehsadat (June 2012). "Bypass Method For Recip Compressor Capacity Control". Pipeline and Gas Journal. 239 (6). Archived from the original on August 12, 2014. Retrieved February 9, 2024.
  86. ^ "Heat Stroke (Hyperthermia)". Harvard Health. January 2, 2019. Archived from the original on January 29, 2021. Retrieved May 13, 2021.
  87. ^ "Weather Related Fatality and Injury Statistics". National Weather Service. 2021. Archived from the original on August 24, 2022. Retrieved August 24, 2022.
  88. ^ "Extreme Weather: A Guide to Surviving Flash Floods, Tornadoes, Hurricanes, Heat Waves, Snowstorms Tsunamis and Other Natural Disasters". Reference Reviews. 26 (8): 41. October 19, 2012. doi:10.1108/09504121211278322. ISSN 0950-4125. Archived from the original on January 21, 2024. Retrieved December 9, 2023.
  89. ^ Jump up to:a b c Gamarro, Harold; Ortiz, Luis; González, Jorge E. (August 1, 2020). "Adapting to Extreme Heat: Social, Atmospheric, and Infrastructure Impacts of Air-Conditioning in Megacities—The Case of New York City". Journal of Engineering for Sustainable Buildings and Cities. 1 (3). doi:10.1115/1.4048175. ISSN 2642-6641. S2CID 222121944.
  90. ^ Spiegelman, Jay; Friedman, Herman; Blumstein, George I. (September 1, 1963). "The effects of central air conditioning on pollen, mold, and bacterial concentrations". Journal of Allergy. 34 (5): 426–431. doi:10.1016/0021-8707(63)90007-8. ISSN 0021-8707. PMID 14066385.
  91. ^ Portnoy, Jay M.; Jara, David (February 1, 2015). "Mold allergy revisited". Annals of Allergy, Asthma & Immunology. 114 (2): 83–89. doi:10.1016/j.anai.2014.10.004. ISSN 1081-1206. PMID 25624128.
  92. ^ "Subpart 4-1 – Cooling Towers". New York Codes, Rules and Regulations. June 7, 2016. Archived from the original on May 13, 2021. Retrieved May 13, 2021.
  93. ^ Nordhaus, William D. (February 10, 2010). "Geography and macroeconomics: New data and new findings". Proceedings of the National Academy of Sciences. 103 (10): 3510–3517. doi:10.1073/pnas.0509842103. ISSN 0027-8424. PMC 1363683. PMID 16473945.
  94. ^ Barreca, Alan; Deschenes, Olivier; Guldi, Melanie (2018). "Maybe next month? Temperature shocks and dynamic adjustments in birth rates". Demography. 55 (4): 1269–1293. doi:10.1007/s13524-018-0690-7. PMC 7457515. PMID 29968058.
  95. ^ Glaeser, Edward L.; Tobio, Kristina (January 2008). "The Rise of the Sunbelt". Southern Economic Journal. 74 (3): 609–643. doi:10.1002/j.2325-8012.2008.tb00856.x.
  96. ^ Sherman, Peter; Lin, Haiyang; McElroy, Michael (2018). "Projected global demand for air conditioning associated with extreme heat and implications for electricity grids in poorer countries". Energy and Buildings. 268: 112198. doi:10.1016/j.enbuild.2022.112198. ISSN 0378-7788. S2CID 248979815.
  97. ^ Air Filters Used in Air Conditioning and General Ventilation Part 1: Methods of Test for Atmospheric Dust Spot Efficiency and Synthetic Dust Weight Arrestance (Withdrawn Standard). British Standards Institution. March 29, 1985. BS 6540-1:1985.
  98. ^ Mutschler, Robin; Rüdisüli, Martin; Heer, Philipp; Eggimann, Sven (April 15, 2021). "Benchmarking cooling and heating energy demands considering climate change, population growth and cooling device uptake". Applied Energy. 288: 116636. Bibcode:2021ApEn..28816636M. doi:10.1016/j.apenergy.2021.116636. ISSN 0306-2619.
  99. ^ Jump up to:a b "Climate-friendly cooling could cut years of Greenhouse Gas Emissions and save US$ trillions: UN". Climate Change and Law Collection. doi:10.1163/9789004322714_cclc_2020-0252-0973.
  100. ^ Gerretsen, Isabelle (December 8, 2020). "How your fridge is heating up the planet". BBC Future. Archived from the original on May 10, 2021. Retrieved May 13, 2021.
  101. ^ Encyclopedia of Energy: Ph-S. Elsevier. 2004. ISBN 978-0121764821.
  102. ^ Corberan, J.M. (2016). "New trends and developments in ground-source heat pumps". Advances in Ground-Source Heat Pump Systems. pp. 359–385. doi:10.1016/B978-0-08-100311-4.00013-3. ISBN 978-0-08-100311-4.
  103. ^ Roselli, Carlo; Sasso, Maurizio (2021). Geothermal Energy Utilization and Technologies 2020. MDPI. ISBN 978-3036507040.
  104. ^ "Cooling Emissions and Policy Synthesis Report: Benefits of cooling efficiency and the Kigali Amendment, United Nations Environment Programme - International Energy Agency, 2020" (PDF).
  105. ^ Harlan, Sharon L.; Declet-Barreto, Juan H.; Stefanov, William L.; Petitti, Diana B. (February 2013). "Neighborhood Effects on Heat Deaths: Social and Environmental Predictors of Vulnerability in Maricopa County, Arizona". Environmental Health Perspectives. 121 (2): 197–204. Bibcode:2013EnvHP.121..197H. doi:10.1289/ehp.1104625. ISSN 0091-6765. PMC 3569676. PMID 23164621.
  106. ^ Jump up to:a b Chan, Emily Ying Yang; Goggins, William B; Kim, Jacqueline Jakyoung; Griffiths, Sian M (April 2012). "A study of intracity variation of temperature-related mortality and socioeconomic status among the Chinese population in Hong Kong". Journal of Epidemiology and Community Health. 66 (4): 322–327. doi:10.1136/jech.2008.085167. ISSN 0143-005X. PMC 3292716. PMID 20974839.
  107. ^ Ng, Chris Fook Sheng; Ueda, Kayo; Takeuchi, Ayano; Nitta, Hiroshi; Konishi, Shoko; Bagrowicz, Rinako; Watanabe, Chiho; Takami, Akinori (2014). "Sociogeographic Variation in the Effects of Heat and Cold on Daily Mortality in Japan". Journal of Epidemiology. 24 (1): 15–24. doi:10.2188/jea.JE20130051. PMC 3872520. PMID 24317342.
  108. ^ Stafoggia, Massimo; Forastiere, Francesco; Agostini, Daniele; Biggeri, Annibale; Bisanti, Luigi; Cadum, Ennio; Caranci, Nicola; de'Donato, Francesca; De Lisio, Sara; De Maria, Moreno; Michelozzi, Paola; Miglio, Rossella; Pandolfi, Paolo; Picciotto, Sally; Rognoni, Magda (2006). "Vulnerability to Heat-Related Mortality: A Multicity, Population-Based, Case-Crossover Analysis". Epidemiology. 17 (3): 315–323. doi:10.1097/01.ede.0000208477.36665.34. ISSN 1044-3983. JSTOR 20486220. PMID 16570026. S2CID 20283342.
  109. ^ Jump up to:a b c d Gronlund, Carina J. (September 2014). "Racial and Socioeconomic Disparities in Heat-Related Health Effects and Their Mechanisms: a Review". Current Epidemiology Reports. 1 (3): 165–173. doi:10.1007/s40471-014-0014-4. PMC 4264980. PMID 25512891.
  110. ^ O'Neill, M. S. (May 11, 2005). "Disparities by Race in Heat-Related Mortality in Four US Cities: The Role of Air Conditioning Prevalence". Journal of Urban Health: Bulletin of the New York Academy of Medicine. 82 (2): 191–197. doi:10.1093/jurban/jti043. PMC 3456567. PMID 15888640.
  111. ^ Jump up to:a b Sampson, Natalie R.; Gronlund, Carina J.; Buxton, Miatta A.; Catalano, Linda; White-Newsome, Jalonne L.; Conlon, Kathryn C.; O’Neill, Marie S.; McCormick, Sabrina; Parker, Edith A. (April 1, 2013). "Staying cool in a changing climate: Reaching vulnerable populations during heat events". Global Environmental Change. 23 (2): 475–484. Bibcode:2013GEC....23..475S. doi:10.1016/j.gloenvcha.2012.12.011. ISSN 0959-3780. PMC 5784212. PMID 29375195.
  112. ^ Niktash, Amirreza; Huynh, B. Phuoc (July 2–4, 2014). Simulation and Analysis of Ventilation Flow Through a Room Caused by a Two-sided Windcatcher Using a LES Method (PDF). World Congress on Engineering. Lecture Notes in Engineering and Computer Science. Vol. 2. London. eISSN 2078-0966. ISBN 978-9881925350. ISSN 2078-0958. Archived (PDF) from the original on April 26, 2018. Retrieved May 13, 2021.
  113. ^ Zhang, Chen; Kazanci, Ongun Berk; Levinson, Ronnen; Heiselberg, Per; Olesen, Bjarne W.; Chiesa, Giacomo; Sodagar, Behzad; Ai, Zhengtao; Selkowitz, Stephen; Zinzi, Michele; Mahdavi, Ardeshir (November 15, 2021). "Resilient cooling strategies – A critical review and qualitative assessment". Energy and Buildings. 251: 111312. Bibcode:2021EneBu.25111312Z. doi:10.1016/j.enbuild.2021.111312. hdl:2117/363031. ISSN 0378-7788.
  114. ^ Linden, P. F. (1999). "The Fluid Mechanics of Natural Ventilation". Annual Review of Fluid Mechanics. 31: 201–238. Bibcode:1999AnRFM..31..201L. doi:10.1146/annurev.fluid.31.1.201.
  115. ^ Santamouris, M.; Asimakoupolos, D. (1996). Passive cooling of buildings (1st ed.). London: James & James (Science Publishers) Ltd. ISBN 978-1-873936-47-4.
  116. ^ Leo Samuel, D.G.; Shiva Nagendra, S.M.; Maiya, M.P. (August 2013). "Passive alternatives to mechanical air conditioning of building: A review". Building and Environment. 66: 54–64. Bibcode:2013BuEnv..66...54S. doi:10.1016/j.buildenv.2013.04.016.
  117. ^ M.j, Limb (January 1, 1998). "BIB 08: An Annotated Bibliography: Passive Cooling Technology for Office Buildings in Hot Dry and Temperate Climates".
  118. ^ Niles, Philip; Kenneth, Haggard (1980). Passive Solar Handbook. California Energy Resources Conservation. ASIN B001UYRTMM.
  119. ^ "Cooling: The hidden threat for climate change and sustainable goals". phys.org. Retrieved September 18, 2021.
  120. ^ Ford, Brian (September 2001). "Passive downdraught evaporative cooling: principles and practice". Arq: Architectural Research Quarterly. 5 (3): 271–280. doi:10.1017/S1359135501001312. ISSN 1474-0516. S2CID 110209529.
  121. ^ Jump up to:a b Chen, Meijie; Pang, Dan; Chen, Xingyu; Yan, Hongjie; Yang, Yuan (2022). "Passive daytime radiative cooling: Fundamentals, material designs, and applications". EcoMat. 4. doi:10.1002/eom2.12153. S2CID 240331557. Passive daytime radiative cooling (PDRC) dissipates terrestrial heat to the extremely cold outer space without using any energy input or producing pollution. It has the potential to simultaneously alleviate the two major problems of energy crisis and global warming.
  122. ^ Raman, Aaswath P.; Anoma, Marc Abou; Zhu, Linxiao; Rephaeli, Eden; Fan, Shanhui (November 2014). "Passive radiative cooling below ambient air temperature under direct sunlight". Nature. 515 (7528): 540–544. Bibcode:2014Natur.515..540R. doi:10.1038/nature13883. PMID 25428501.
  123. ^ Jump up to:a b Bijarniya, Jay Prakash; Sarkar, Jahar; Maiti, Pralay (November 2020). "Review on passive daytime radiative cooling: Fundamentals, recent researches, challenges and opportunities". Renewable and Sustainable Energy Reviews. 133: 110263. Bibcode:2020RSERv.13310263B. doi:10.1016/j.rser.2020.110263. S2CID 224874019.
  124. ^ Mokhtari, Reza; Ulpiani, Giulia; Ghasempour, Roghayeh (July 2022). "The Cooling Station: Combining hydronic radiant cooling and daytime radiative cooling for urban shelters". Applied Thermal Engineering. 211: 118493. Bibcode:2022AppTE.21118493M. doi:10.1016/j.applthermaleng.2022.118493.
  125. ^ Yang, Yuan; Zhang, Yifan (July 2020). "Passive daytime radiative cooling: Principle, application, and economic analysis". MRS Energy & Sustainability. 7 (1). doi:10.1557/mre.2020.18.
  126. ^ Miranda, Nicole D.; Renaldi, Renaldi; Khosla, Radhika; McCulloch, Malcolm D. (October 2021). "Bibliometric analysis and landscape of actors in passive cooling research". Renewable and Sustainable Energy Reviews. 149: 111406. Bibcode:2021RSERv.14911406M. doi:10.1016/j.rser.2021.111406.
  127. ^ Jump up to:a b Needham, Joseph; Wang, Ling (1991). Science and Civilisation in China, Volume 4: Physics and Physical Technology, Part 2, Mechanical Engineering. Cambridge University Press. ISBN 978-0521058032. OCLC 468144152.
  128. ^ Dalley, Stephanie (2002). Mari and Karana: Two Old Babylonian Cities (2nd ed.). Piscataway, New Jersey: Gorgias Press. p. 91. ISBN 978-1931956024. OCLC 961899663. Archived from the original on January 29, 2021. Retrieved May 13, 2021.
  129. ^ Nagengast, Bernard (February 1999). "Comfort from a Block of Ice: A History of Comfort Cooling Using Ice" (PDF). ASHRAE Journal. 41 (2): 49. ISSN 0001-2491. Archived (PDF) from the original on May 13, 2021. Retrieved May 13, 2021.
  130. ^ Bahadori, Mehdi N. (February 1978). "Passive Cooling Systems in Iranian Architecture". Scientific American. 238 (2): 144–154. Bibcode:1978SciAm.238b.144B. doi:10.1038/SCIENTIFICAMERICAN0278-144.
  131. ^ Smith, Shane (2000). Greenhouse Gardener's Companion: Growing Food and Flowers in Your Greenhouse Or Sunspace. Illustrated by Marjorie C. Leggitt (illustrated, revised ed.). Golden, Colorado: Fulcrum Publishing. p. 62. ISBN 978-1555914509. OCLC 905564174. Archived from the original on May 13, 2021. Retrieved August 25, 2020.

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