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A quasi one-dimensional method and results for steady annular/stratified shear and gravity driven condensing flows

机译:准一维方法和稳定的环形/分层剪切和重力驱动冷凝流的结果

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摘要

This paper presents an effective quasi one-dimensional (1-D) computational simulation methodology for steady annular/stratified internal condensing flows of pure vapor. In-channel and in-tube flows are considered for a range of gravity component values in the direction of the flow. For these flows, three sets of results are presented and they are obtained from: (i) a full 2-D CFD based approach, (ii) the quasi-lD approach introduced here, and (iii) relevant experimental results for gravity driven condensing flows of FC-72. Besides demonstrating differences between shear and gravity driven annular flows, the paper also presents a map that distinguishes shear driven, gravity driven, and "mixed" driven flows within the non-dimensional parameter space that govern these duct flows. The paper also demonstrates that Hm-scale hydraulic diameter ducts typically experience shear/pressure driven flows.
机译:本文提出了一种有效的准一维(1-D)计算模拟方法,用于纯蒸气的稳定环形/分层内部冷凝流。对于流向的重力分量值范围,应考虑通道内和管内流动。对于这些流,给出了三组结果,这些结果可从以下几项中获得:(i)完全基于2D CFD的方法,(ii)此处介绍的准lD方法,以及(iii)重力驱动冷凝的相关实验结果FC-72的流量。除了说明剪切力和重力驱动的环形流之间的差异外,本文还提供了一张地图,该图在控制这些管道流的无量纲参数空间内区分了剪切力驱动,重力驱动和“混合”驱动流。本文还表明,Hm级液压直径管道通常会经历剪切/压力驱动的流动。

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