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首页> 外文期刊>Heat transfer >Study On Heat Transfer Characteristics Of Reservoir Embedded Loop Heat Pipe (influence Of Condenser Cooling Method On Heattransfer Characteristics)
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Study On Heat Transfer Characteristics Of Reservoir Embedded Loop Heat Pipe (influence Of Condenser Cooling Method On Heattransfer Characteristics)

机译:油藏嵌入式回路热管的传热特性研究(冷凝器冷却方式对传热特性的影响)

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摘要

As heat generation in satellites increases, securing sufficient radiator panel area is an important problem. Deployable radiators, whose radiator panels are deployed post-launch in space to increase the effective radiator panel area of the satellite, is becoming an important thermal control technology. A reservoir embedded loop heat pipe (RELHP) is applied to the deployable radiator for a thermal transport device. This paper presents the heat transport dynamic characteristics of a RELHP using a radiant cooling condenser and liquid forced convection cooling condenser by an experimental study. It was found that heat leak into the liquid line, flexible line, and reservoir increases the length of the sub-cooling region in the condenser. In the case of the radiant cooling condenser, the sub-cooling region length is shorter than that of a liquid forced convection cooling condenser. Furthermore, vapor temperature is mainly decided by the radiation capacity of the radiator panel, because liquid temperature returned into the evaporator rises with an increase in radiator panel temperature. In addition, time length from start-up until steady state is greater than the liquid forced convection cooling condenser case, because the radiator panel has a large heat capacity.
机译:随着卫星中产生的热量增加,确保足够的散热器面板面积是一个重要的问题。可展开式散热器的发射板在发射后在太空中进行部署,以增加卫星的有效散热器板面积,这已成为一种重要的热控制技术。将蓄水池嵌入式回路热管(RELHP)应用于热传输设备的可展开散热器。通过实验研究,给出了辐射冷却冷凝器和液体对流冷却冷凝器的RELHP传热动力学特性。已经发现,热量泄漏到液体管线,柔性管线和容器中会增加冷凝器中过冷区域的长度。在辐射冷却冷凝器的情况下,过冷却区域的长度短于液体强制对流冷却冷凝器的长度。此外,蒸气温度主要由散热器板的散热能力决定,因为返回到蒸发器中的液体温度随着散热器板温度的升高而升高。另外,因为散热器面板具有大的热容量,所以从启动到稳定状态的时间长度比液体对流冷却冷凝器壳体长。

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