Vapor flow analysis in partially-heated concentric annular heat pipes

M. Layeghi, A. Nouri-Borujerdi
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引用次数: 12

Abstract

The steady-state laminar and incompressible vapor flow in four partially-heated concentric annular heat pipe (CAHP) is studied. The governing equations are solved numerically, using finite volume approach based on collocated grids. The first order upwind scheme and the QUICK scheme are used in the numerical solution. The vapor pressure distributions and velocity profiles along the annular vapor space are predicted for a number of test cases in the range of low to moderate radial Reynolds numbers. The results show that in a partially-heated annular heat pipe, as the radial Reynolds number increases, a number of recirculation zones may be created at both ends of the evaporator and condenser sections. The size and location of the recirculation zones are predicted and their effects on the performance of an annular heat pipe are discussed qualitatively.
局部加热同心环形热管中的蒸汽流动分析
研究了四个部分加热同心环形热管(CAHP)中的稳态层流和不可压缩蒸汽流动。采用基于并置网格的有限体积法对控制方程进行了数值求解。数值求解采用了一阶迎风格式和QUICK格式。在低至中等径向雷诺数范围内,预测了一些测试用例沿环形蒸汽空间的蒸汽压分布和速度分布。结果表明,在局部加热的环形热管中,随着径向雷诺数的增加,在蒸发器和冷凝器段的两端可能会产生一些再循环区。预测了循环区的大小和位置,并定性地讨论了它们对环形热管性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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