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Thermal Performance of Pump-assisted Loop Heat Pipe using R245fa as Working Fluid

机译:R245fa作为工作流体的泵辅助回路热管的热性能

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The thermal performances of two loop heat pipes driven by capillary force (CF) and pumping force (PF) using R245a as working fluid were experimentally studied. The variations responsive to the adjustments of heating power, condenser cooling condition and flow rate of working fluid for the average Nusselt numbers of evaporator and condenser, the heat transmission networks, the total thermal resistances and the cooling power consumptions for the CF and PF loop heat pipes were comparatively examined. A selective set of experimental data demonstrated the improvements of thermal performance for the PF loop heat pipe due to the increased vapor-liquid circulation rates and the modified pressure drop characteristics along the loop. The dominant physics for the thermal performance improvements from the CF references were discussed. A set of empirical correlations that permitted the evaluation of the total thermal resistances of the PF loop were devised to assist the relevant engineering applications. Justified by the vanished start-up limit and the reductions of thermal resistance disclosed by the present preliminary study, the research focuses for the technology advancement of the forced convective loop heat pipe was recommended.
机译:实验研究了以R245a为工作流体的毛细管力(CF)和泵送力(PF)驱动的两个回路热管的热性能。响应于蒸发器和冷凝器的平均努塞尔数,热传导网络,总热阻以及CF和PF回路热量的冷却功率消耗的热功率,冷凝器冷却条件和工作流体流量的调整而产生的变化对管道进行了比较检查。一组选择性的实验数据表明,由于气液循环速率的提高和沿环路的改进的压降特性,PF环路热管的热性能得到了改善。讨论了从CF参考文献中改善热性能的主要物理原理。设计了一组经验相关性,可以评估PF回路的总热阻,以协助相关的工程应用。由目前的初步研究揭示的消失的启动极限和热阻的降低是有道理的,推荐的研究重点是强制对流回路热管的技术进步。

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