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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Characterization of a dual taper thermosiphon loop for CPU cooling in data centers
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Characterization of a dual taper thermosiphon loop for CPU cooling in data centers

机译:数据中心CPU冷却双锥形热循环环的特征

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The inefficient cooling processes in data centers consume a large amount of energy making them very expensive. This study is focuses on using a thermosiphon loop as an efficient replacement of currently used air cooling and water cooling techniques for dissipating large heat loads from the CPUs. A symmetric dual taper configuration is introduced in the evaporator to generate a highly efficient and stable two-phase flow in the system using HFE7000. Three different taper angles in the evaporator -2 degrees, 2.5 degrees, and 3 degrees - are studied, and the respective heat transfer performances are evaluated. The evaporator has 200 mu m square microchannels machined on a 34.5 mm x 32 mm copper heat sink. Prior to CPU testing, the dual taper evaporator performance is evaluated in a benchtop thermosiphon loop in which the evaporator is heated by electric heaters. The loop is able to dissipate 280 W without reaching the critical flux point with a heat transfer coefficient of 26 kW/m(2) degrees C. The thermosiphon loop is then tested for cooling a data center server with an i7-930 processor with thermal design power (TDP) of 130 W. The cooling performance of the thermosiphon loop is compared with commercial air based and water based coolers in both server and benchtop configurations.
机译:数据中心的低效冷却过程消耗大量的能量使它们非常昂贵。本研究专注于使用热虹吸环作为当前使用的空气冷却和水冷却技术的有效更换,用于耗散来自CPU的大量热负荷。在蒸发器中引入了对称双锥形配置,以在系统中产生高效且稳定的两相流,使用HFE7000。研究了蒸发器-2度,2.5度和3度的三个不同的锥形角度,并评估各自的传热性能。蒸发器在34.5mm x 32 mm的铜散热器上加工200μm平方微通道。在CPU测试之前,在台式热虹回环中评估双锥形蒸发器性能,其中蒸发器被电加热器加热。该环路能够在26 kW / m(2)℃的传热系数的传热系数中不达到280w而不达到临界通量点。然后测试热虹吸环,用于使用热量的I7-930处理器冷却数据中心服务器设计电源(TDP)为130W。在服务器和台式配置中,将热虹吸环的冷却性能与商业空气基于和水基冷却器进行比较。

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