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Two-phase refrigerant flow instability analysis and active control in transient electronics cooling systems

机译:瞬态电子冷却系统中两相制冷剂流动不稳定性分析和主动控制

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摘要

Two-loop refrigeration systems are being explored for two-phase cooling of ultra high power electronic components. For effective and efficient thermal management of electronic systems, active control methods are desired to suppress inherent flow instabilities especially in transient applications. This paper presents a framework for the transient analysis and active control of pressure-drop flow instabilities under varying imposed heat loads. The external effects on boiling flow characteristics and the boiling oscillatory flow responses to transient heat load changes are studied. Flow instability margins can be quantitatively predicted from an analytical two-phase flow model. In addition, the effects of wall thermal inertia on flow oscillations is systematically investigated. Based on the theoretical analysis of oscillatory flow boiling of refrigerants, a set of active control schemes are developed and studied to suppress flow oscillations and to increase the critical heat flux. With the available control devices - inlet valve and supply pump - different active control schemes are studied to improve the transient two-phase cooling performance.
机译:目前正在探索两回路制冷系统,以对超高功率电子元件进行两相冷却。为了有效和高效地进行电子系统的热管理,需要主动控制方法来抑制固有的流量不稳定性,尤其是在瞬态应用中。本文提出了一个框架,用于瞬态分析和在变化的热负荷下主动控制压降流动的不稳定性。研究了沸腾流动特性的外部影响以及瞬态热负荷变化对沸腾振荡流动的影响。流动不稳定性裕度可以通过分析两相流模型定量预测。此外,系统地研究了壁热惯性对流动振荡的影响。基于制冷剂的振荡流动沸腾的理论分析,开发并研究了一套主动控制方案,以抑制流动振荡并增加临界热通量。利用可用的控制装置-进气阀和供应泵-研究了不同的主动控制方案以改善瞬态两相冷却性能。

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