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Steady state model of a loop heat pipe (LHP) with coherent porous silicon (CPS) wick in the evaporator

机译:蒸发器中具有相干多孔硅(CPS)芯的回路热管(LHP)的稳态模型

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A theoretical study is conducted to explore the effect of different parameters on the performance of a loop heat pipe (LHP). These parameters are evaporator temperature, condenser temperature, total mass charge, the tube size of the piping system, and pumping distance between evaporator and condenser. This paper presents a steady state model that describes the thermodynamics, heat transfer, and fluid mechanics inside an LHP. An LHP is a two-phase device with extremely high effective thermal conductivity that utilizes the thermodynamic pressure difference that developed between the evaporator and condenser to circulate a working fluid through a closed loop. The loop heat pipe efficiently transports the heat generated by a highly localized concentrated heat source and discharges this heat to a convenient sink. The steady state LHP model is described by the conservation equations, thermodynamic relations, and capillary and nucleate boiling limits. The loop heat pipe cycle is presented on a temperature-entropy diagram. A relationship is developed to predict the ratio of the heat of evaporation to the heat leaked to the compensation chamber. This work predicts the size of an LHP, the pumping distance, and the maximum power that can be dissipated for a fixed source temperature.
机译:进行了理论研究,以探索不同参数对回路热管(LHP)性能的影响。这些参数是蒸发器温度,冷凝器温度,总装料量,管道系统的管道尺寸以及蒸发器和冷凝器之间的泵送距离。本文提出了一个稳态模型,该模型描述了LHP内部的热力学,传热和流体力学。 LHP是具有极高有效导热率的两相设备,它利用蒸发器和冷凝器之间产生的热力学压力差使工作流体通过闭环循环。回路热管有效地传输高度集中的集中热源产生的热量,并将这些热量排放到方便的散热器中。稳态LHP模型由守恒方程,热力学关系以及毛细管和核沸腾极限来描述。循环热管循环在温度-熵图上显示。建立一种关系来预测蒸发热与泄漏到补偿室的热的比率。这项工作可以预测LHP的大小,抽油距离以及在固定的源温度下可以消耗的最大功率。

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