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Design considerations relating to non-thermal aspects of passive 2-phase immersion cooling

机译:与无源2相浸没冷却的非热方面有关的设计考虑因素

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There is renewed interest in passive 2-phase immersion for cooling power electronics and high performance computers. This can be attributed to recent research showing its performance potential compared with more complex and costly techniques, to innovations that simplify its application and to a general trend toward higher power densities. Though the thermal performance capabilities of passive 2-phase immersion cooling are well documented, the technique is not widely practiced and system designers will find little published information concerning subtler and very critical aspects of system design. There is no manual, for example, concerning practical details like material compatibility, electrical signal integrity (SI), fluid decomposition, management of moisture and light gases, and so on. This paper presents a useful material compatibility test method and explains the mechanisms of distillation and extraction that are intrinsic to a refluxing 2-phase system and by which wetted materials interact with the fluid and each other. It discusses sources, implications and techniques for removal of organic contaminants, water, non-condensable air and fluid thermal decomposition products. Data are presented from sub-20GHz SI experiments conducted with backplane connectors and microstrip transmission lines submerged in two classes of environmentally sustainable working fluids. It is hoped that this overview will demystify these subjects for designers unfamiliar with passive 2-phase immersion cooling and encourage more widespread adoption of this elegant and proven technology.
机译:用于冷却电力电子和高性能计算机的被动式2相浸没的兴趣。这可以归因于最近的研究,表明其性能潜力与更复杂且昂贵的技术相比,以简化其应用的创新以及对更高电力密度的一般趋势的创新。虽然被动2相浸没冷却的热性能能力良好记录,但该技术并不广泛实践,系统设计人员会发现有关副专题的发布信息以及系统设计的非常关键的方面。例如,没有手动关于材料兼容性,电信号完整性(Si),流体分解,水分和轻质的管理等实际细节,等等。本文提出了一种有用的材料兼容性测试方法,并解释了蒸馏和提取的机制,其是回流2相系统的内在型和湿润物质与流体和彼此相互作用。它讨论了去除有机污染物,水,不可冷凝的空气和流体热分解产物的来源,影响和技术。数据出发于由背板连接器和微带传输线进行的Sub-20GHz Si实验中,并在两类环境可持续的工作流体中浸没。希望这一概述将使这些主题毫不含有不熟悉的被动式2相浸没冷却,并鼓励更广泛采用这种优雅和经过验证的技术。

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