Experimental design and comparative testing of a hybrid-cooled computer cluster

A. Bonnie
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引用次数: 1

Abstract

With water cooling becoming an affordable option both at home and at scale, it is important to consider the possible benefits over air cooling. There are several methods of liquid cooling, notables include: immersion, cold water cooling, and warm water cooling. The total cost of ownership is difficult to determine with these options as each has a different impact on the data center. Considering retrofit, over a new data center, introduces unforeseen variables that make cost analysis a challenge. Besides the added costs of additional infrastructure, and the cost to remove old, the upfront costs could be daunting. Therefore a cost analysis would be a study of its own. This study however hopes to reveal the resulting tradeoffs in temperature, performance, and power usage presented in the case between classical airflow based heat sink mechanisms to water provided directly at the heat sink. Having control over a discrete chiller will provide answers to the CPU temperatures, power usage, and performance at various inlet water temperatures. To water or to air?
混合冷却计算机集群的实验设计与对比测试
随着水冷却在家庭和规模上成为一种负担得起的选择,重要的是要考虑比空气冷却可能带来的好处。有几种方法的液体冷却,值得注意的是:浸泡,冷水冷却,和温水冷却。很难确定这些选项的总拥有成本,因为每个选项对数据中心的影响不同。考虑对新数据中心进行改造,会引入不可预见的变量,使成本分析成为一项挑战。除了额外基础设施的额外成本和拆除旧设施的成本外,前期成本可能令人望而生畏。因此,成本分析本身就是一项研究。然而,本研究希望揭示在经典的基于气流的散热器机制与直接在散热器提供水之间的情况下,在温度、性能和功耗方面的权衡。控制一个独立的冷却器将提供答案的CPU温度,功率使用,和性能在不同的进水温度。水还是空气?
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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