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Prediction of transpiration effects on heat and mass transfer by different turbulence models

机译:不同湍流模型对蒸腾作用对传热传质的影响预测

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The paper reports the results of a study related to transpirating flows, stimulated by the interest that these phenomena, occurring in the presence of simultaneous heat and mass transfer, have for nuclear reactor applications. The work includes a summary and the follow-up of previous experimental and numerical investigations on filmwise condensation and falling film evaporation and of a recent review of different forms of the heat and mass transfer analogy. The particular objective here pursued is to compare transpiration effects as predicted by different turbulence models with classical suction and blowing multipliers based on stagnant layer theories, in the attempt to clarify their quantitative implications on the predicted mass transfer rates. A commercial and an in-house CFD code have been adopted for evaluating the heat and mass transfer rates occurring over a flat plate exposed to an air-vapour stream, with uniform bulk steam mass fraction and temperature boundary conditions at the wall. This simple configuration was purposely selected since it is a simplified representation of the test section of an experimental facility presently in operation at the University of Pisa. This allows a direct comparison between the heat and mass transfer coefficients predicted by CFD models and classical correlations for Nusselt and Sherwood numbers.
机译:该论文报告了与蒸发流有关的研究结果,这是由于人们对同时发生传热传质的现象对核反应堆的应用产生了兴趣。这项工作包括以前的有关膜状冷凝和降膜蒸发的实验和数值研究的总结和后续工作,以及对不同形式的传热和传质模拟的最新综述。此处追求的特定目标是将基于不同的湍流模型预测的蒸腾作用与基于停滞层理论的经典吸气和吹气乘数进行比较,以试图阐明其对预测的传质速率的定量影响。已采用商业和内部CFD代码来评估暴露在空气流中的平板上发生的传热和传质速率,且壁上的蒸汽总质量分数和温度边界条件均匀。之所以选择这种简单的配置,是因为它是比萨大学目前正在运行的实验设施的测试部分的简化表示。这可以直接比较CFD模型预测的传热系数和传质系数以及Nusselt和Sherwood数的经典相关性。

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