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Condensation Heat Transfer in Horizontal Non-Circular Microchannels

机译:水平非圆形微通道中的冷凝传热

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摘要

This investigation contributes to a better understanding of condensation heat transfer in horizontal non-circular microchannels. For this purpose, the conservation equations of mass, momentum and energy have been numerically solved in both phases (liquid and vapor), and all the more, so the film thickness analytical expression has been established. Numerical results relative to variations of the meniscus curvature radius, the condensate film thickness, the condensation length and heat transfer coefficients, are analyzed in terms of the influencing physical and geometrical quantities. The effect of the microchannel shapes on the average Nusselt number is highlighted by studying condensation of steam insquare, rectangular and equilateral triangular microchannels with the same hydraulic diameter of 250 μm.
机译:这项研究有助于更好地理解水平非圆形微通道中的冷凝传热。为此,已经在两个阶段(液体和蒸气)中对质量,动量和能量的守恒方程进行了数值求解,并且更进一步,因此建立了膜厚分析表达式。相对于弯月面曲率半径,冷凝液膜厚,冷凝长度和传热系数变化的数值结果,根据影响物理和几何量的方法进行了分析。通过研究相同的水力直径为250μm的方形,矩形和等边三角形蒸汽微通道的冷凝,可以突出微通道形状对平均Nusselt数的影响。

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