On the Wall Boundary Condition for Computing Turbulent Heat Transfer With K–ω Models

J. Bredberg, S. Peng, L. Davidson
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引用次数: 12

Abstract

A new wall boundary condition for the standard Wilcox’s k–ω model (1988) is proposed. The model combines a wall function and a low-Reynolds number approach, and a function that smoothly blends the two formulations, enabling the model to be used independently of the location of the first interior computational node. The model is calibrated using DNS-data for a channel flow and applied to a heat transfer prediction for a flow in a rib-roughened channel (Reb = 100 000). The results obtained with the new model are improved for various mesh sizes and are asymptotically identical with those of the standard k–ω turbulence model.
用K -ω模型计算湍流换热的壁面边界条件
提出了标准Wilcox的k -ω模型(1988)的一个新的壁面边界条件。该模型结合了壁函数和低雷诺数方法,并且平滑地混合了两种公式,使模型能够独立于第一个内部计算节点的位置使用。该模型使用通道流动的dns数据进行校准,并应用于肋粗化通道(Reb = 100,000)中的流动的传热预测。在不同网格尺寸下,新模型的计算结果得到了改进,并与标准k -ω湍流模型的计算结果渐近一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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