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Numerical study of steam condensation inside a long inclined flattened channel

机译:长倾斜扁平通道内蒸汽凝结的数值研究

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In this work, condensation of steam inside a long inclined flattened channel was studied numerically. The simulated case is a flattened channel with a length of 10.7 m and a very high aspect ratio. The channel width and height are 0.0063 m and 0.214 m, respectively. The volume of fluid (VOF) multiphase flow formulation was used to present the governing equations. The flow field was assumed to be three-dimensional, unsteady and turbulent. Furthermore, the working fluid was water with constant properties at the specified saturation temperature. The effects of various parameters such as inclination angle, steam mass flux and saturation temperature on the condensation heat transfer coefficient, cooling wall temperature, and pressure drop along the channel were investigated. The present results showed very good agreement with the previous experimental work and available correlations. It was found that the increase in the inclination angle, steam mass flux and the decrease in the saturation temperature caused an increase in the heat transfer coefficient. The results also showed that the dominant mode of condensation was the drop-wise mode on the cooling wall. Furthermore, in some cases, complete condensation was observed, which caused sub-cooling in the condensate river and backflow from the exit region of the channel. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项工作中,对长倾斜的扁平通道内的蒸汽凝结进行了数值研究。模拟的情况是扁平通道,长度为10.7 m,纵横比非常高。通道的宽度和高度分别为0.0063 m和0.214 m。流体体积(VOF)多相流动公式用于表示控制方程。假定流场是三维的,不稳定的和湍流的。此外,工作流体是在指定的饱和温度下具有恒定特性的水。研究了倾角,蒸汽质量通量和饱和温度等各种参数对冷凝传热系数,冷却壁温度和沿通道的压降的影响。目前的结果表明与先前的实验工作和可用的相关性非常好一致性。发现倾斜角的增加,蒸汽质量通量的增加和饱和温度的降低引起了传热系数的增加。结果还表明,冷凝的主要模式是冷却壁上的逐滴模式。此外,在某些情况下,观察到完全凝结,这导致凝结水过冷并从通道出口区域回流。 (C)2019 Elsevier Ltd.保留所有权利。

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