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Comparison of Boiling and Condensation Characteristics in the Porous Wick of a Flat Heat Pipe in Vertical and Horizontal Orientation

机译:垂直和水平取向下扁平热管多孔芯的沸腾和冷凝特性的比较

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The two-phase flow through porous media is an important topic which spans a broad spectrum of engineering disciplines especially in porous heat pipes. Heat pipe is a thermodynamic device that transports heat energy from one location to another with a negligible temperature drop. The aim of the present work is to investigate the phase-change mechanisms, namely boiling and condensation, in the flat heat pipe system with different orientation. Governing equations used for the formulation are continuity, mixture momentum, liquid conservation and energy equations. These equations are converted into three ordinary differential equations using similarity transformation and two-phase similarity solutions are obtained for both boiling and condensing flows. In each case, a two phase zone where the liquid and vapour can coexist appears adjacent to the wall. As the heat transfer at the wall gradually enhances, the liquid saturation at the wall approaches to the limiting value, zero, for boiling and unity for condensation. The present work is an attempt to predict numerically the liquid wall saturation, non-dimensional temperature, nondimensional temperature gradient and effect of Sherwood number during the phase change of water-steam system in the heat pipe for horizontal and vertical cases.
机译:通过多孔介质的两相流是一个重要的主题,它跨越广泛的工程学科,尤其是多孔热管。热管是一种热力动力学装置,其将热能从一个位置传送到另一个位置,温度下降可忽略。本工作的目的是在具有不同取向的扁平热管系统中研究相变机制,即沸腾和冷凝。用于制剂的控制方程是连续性,混合动力,液体养护和能量方程。这些等式被转换为三种常微分方程,使用相似性转换,并且获得两相相同溶液,用于沸腾和冷凝流。在每种情况下,两个相区域,其中液体和蒸气可以共存,出现在壁附近。随着壁的热传递逐渐增强,壁上的液体饱和度达到限制值,零,用于冷凝的沸腾和单位。目前的作品是在水蒸汽系统中的水蒸汽系统中的热管中的相变期间预测数字的液体壁饱和,非尺寸温度,非尺寸温度梯度和舍伍德数的效果。

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