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Operational characteristics of flat type loop heat pipe with biporous wick

机译:双孔芯平式环形热管的运行特性

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摘要

Loop heat pipes (LHPs) are two-phase heat transfer devices that utilize the evaporation and condensation of working liquid to transfer heat. In present paper, experimental researches are conducted for a new type of flat type LHP, in which biporous porous media and stainless steel mesh are adopted as primary wick and secondary wick respectively, and this innovative structure can support the primary wick and assist it pumping working liquid. The loop is made of copper with sintered nickel powder as primary wick and methanol as the working fluid. Both start-up test and performance test are conducted to validate the reliability and performance of the loop. From the test results, it is found that, in the horizontal position, the loop is able to start-up with a heat load rang between 20 W and 160 W(heat flux of 16.8 W/cm~2) with evaporator wall temperature below 85℃. At heat load between 30 W and 80 W, temperature oscillations are observed throughout the loop, however, the effect of this oscillation on the performance of the loop is not significant. During a random loading test, the loop can stand a load jump as high as 100 W without an operation failure. The thermal resistance of the LHP lies between 0.46℃/W to 2.28℃/W.
机译:环路热管(LHP)是两相传热设备,利用工作液体的蒸发和冷凝来传递热量。本文针对新型扁平LHP进行了实验研究,其中双孔多孔介质和不锈钢网分别用作主芯和副芯,这种创新的结构可以支撑主芯并协助其抽水工作液体。回路由铜制成,其中烧结镍粉作为主要油芯,甲醇为工作流体。进行启动测试和性能测试都可以验证环路的可靠性和性能。从测试结果可以发现,在水平位置,当蒸发器壁温低于20 W至160 W(热通量为16.8 W / cm〜2)时,该回路能够启动。 85℃。在30 W和80 W之间的热负荷下,在整个环路中观察到温度振荡,但是,这种振荡对环路性能的影响并不明显。在随机负载测试期间,环路可以承受高达100 W的负载跳跃而不会发生操作故障。 LHP的热阻在0.46℃/ W至2.28℃/ W之间。

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