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Analysis of loop heat pipe performance under varying wick load

机译:改变芯载下的环路热管性能分析

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Loop heat pipes (LHP) are heat transfer devices used to enhance cooling of small spaces and basically consist of sealed tubes connecting a heat source, the evaporator, whose major part is a porous wick, with a condenser that operates as heat sink. In this paper we analyse the effect of curvature of the liquid vapor interface upon the vapor pressure within wick pores. We show how this effect affects start-up by requiring a difference between wick and condenser temperatures as higher as wick pore width becomes smaller. We analysed also transient operation and found that idealy LHP are self-adjusting systems that tend to stable operation. We present a formula to describe the transient regime. The analysis provides also optimization of wick pore width for maximum heat transfer. Optimal pore width is shown to vary with temperature difference between wick and condenser. It is envisaged how this feature may help in LHP design.
机译:环路热管(LHP)是用于增强小空间的冷却的传热装置,基本上由连接热源的密封管组成,蒸发器,其主要部分是多孔芯,具有作为散热器操作的冷凝器。本文中,我们分析了液体膜曲率曲率对芯孔内蒸汽压力的影响。我们展示了这种效果如何影响启动时,通过芯孔宽度变小,芯和冷凝器温度之间的差异变得更高。我们分析了瞬态操作,发现概念LHP是自调节系统,趋于稳定运行。我们提出了一种描述瞬态制度的公式。该分析还提供了芯孔宽度的优化,以进行最大传热。最佳孔宽度显示在芯和冷凝器之间的温差变化。可以设想此功能如何有助于LHP设计。

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