蒸发器
水冷
材料科学
热的
性能系数
传热
体积流量
核工程
热流密度
计算机冷却
机械
主动冷却
工作液
热力学
热泵
机械工程
电子设备和系统的热管理
热交换器
工程类
物理
作者
Masahiro Matsuda,Masataka Mochizuki,Yuji Saito,Koichi Mashiko,Thang Nguyen
标识
DOI:10.1109/itherm.2016.7517655
摘要
Recently, water cooling has become one of the major cooling solutions for electronic devices operating in high heat-flux applications. In the near future, it is expected that much lower thermal resistances at smaller flow rates than current water cooling solutions will be required. This paper discusses the operational criteria and thermal performance of a pump-driven two-phase cooling system that we have developed to meet future thermal expectations. The thermal performance of this cooling system was tested with Fluorinert as the working fluid. It was found that the pumping power of this two-phase cooling system was at least 10 times lower than that of a water cooling system at the same thermal performance level. It was also revealed that a layer of micro-powder sintered onto the surfaces of the evaporator plate fins enhanced the mean heat transfer coefficient around 1.4 times higher than that of non-sintered surface at a flow rate lower than 0.4 L/min.
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