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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >3D-model for heat and mass transfer simulation in flat evaporator of copper-water loop heat pipe
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3D-model for heat and mass transfer simulation in flat evaporator of copper-water loop heat pipe

机译:铜水回路热管平面蒸发器中传热传质模拟的3D模型

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This paper presents a three-dimension mathematical model of a flat evaporator of a loop heat pipe which takes into account the peculiarities of the evaporator configuration and the specific character of a one-side heat load supply. All the main structural elements of the evaporator, such as its body, wick, vapor-removal grooves, barrier layer and compensation chamber, are included in the model. The intensity of heat-exchange processes during evaporation in the active zone is determined by local drops between the temperature at the wick surface and the vapor temperature. The effects of drying the wick in the evaporation zone are also taken into account. The problem was solved by a numerical method. The results of calculations are presented for a copper evaporator and water as a working fluid in the heat load range from 20 to 1100 W. A comparative analysis of calculated and experimental data has been made.
机译:本文提出了一种环形热管平面蒸发器的三维数学模型,该模型考虑了蒸发器配置的特殊性和单侧热负荷供应的特点。该模型包括蒸发器的所有主要结构元素,例如其主体,油芯,除汽槽,阻挡层和补偿室。活性区中蒸发过程中的热交换过程强度取决于灯芯表面温度和蒸汽温度之间的局部下降。还考虑了在蒸发区域中干燥芯的效果。该问题通过数值方法解决。给出了铜蒸发器和水作为工作流体在20至1100 W的热负荷范围内的计算结果。对计算和实验数据进行了比较分析。

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