And yet, you do not have to be a genius to figure out how the enormous energy bills could be reduced. The air side economizers bring outside air into the building and distribute it via a series of dampers and fans.
This is easy to illustrate with the most important - although far from perfect - benchmark for data centers, PUE or Power Usage Effectiveness. Let's see what the hurdles are and how buying the right servers could lead to much more efficient data centers and ultimately an Internet that requires much less energy. I experimented with this (mathematically) and found that heat soak is a serious, variable, concern. Geothermal heat pumps are only moderately more efficient than standard air conditioning and require an enormous amount of area.


Wells don't use vacuum based pumps most aquifers are much to deep for that instead you stick the pump in the bottom of the well and push the water to the service. And it is no secret that they demand a lot of energy: with energy capacities ranging from 10MW to 100MW, they require up to 80,000 times more than what a typical US home needs. The main energy gobblers are the CRACs, Computer Room Air Conditioners or the alternative, the CRAHs, the Computer Room Air Handlers.
PUE is simply the ratio of the total amount of energy consumed by the data center as a whole to the energy consumed by the IT equipment. The data center of Microsoft in Dublin uses large air-side economizers and make good use of the lower temperature of the outside air. Either with a geothermal heat pump set up or cut out the middle man and just use the earth like you would a radiator in a liquid cooling loop.


Unfortunately, water overuse has been drained aquifers such that even the pumping costs would be substantial, and the aquifers will eventually be drained to the point that vacuum-based pumps can no longer draw water. According to a survey of more than 500 data centers conducted by The Uptime Institute, the average Power Usage Effectiveness (PUE) rating for data centers is 1.8. The only problem would be how many wells you would have to drill to cool up to 100MW (I'm thinking 20+ at a depth of at least 50ft).



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Comments

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