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首页> 外文期刊>International Journal of Heat and Fluid Flow >DNS of turbulent channel flow with conjugate heat transfer: Effect of thermal boundary conditions on the second moments and budgets
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DNS of turbulent channel flow with conjugate heat transfer: Effect of thermal boundary conditions on the second moments and budgets

机译:共轭传热的湍流通道DNS:热边界条件对第二时刻和预算的影响

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摘要

Budgets of turbulent heat fluxes and temperature variance obtained from the Direct Numerical Simulation of an incompressible periodic channel flow with a Reynolds number of 150 (based on friction velocity) and a Prandtl number of 0.71 are presented and analysed for four cases: locally imposed temperature at the wall (constant Dirichlet), locally imposed heat flux (constant Neumann), heat exchange coefficient (Robin) and 3D conjugate heat transfer. The dissipation rate associated with the temperature variance is strongly impacted by the thermal boundary condition. For non-conjugate cases, a straightforward analytical analysis establishes the connection between the boundary condition, the temperature variance and the wall-normal part of the thermal dissipation rate at the wall. For the conjugate case, the two-point correlations of the thermal field in the solid domain confirms the existence of very large scale thermal structures. (C) 2015 Elsevier Inc. All rights reserved.
机译:提出并分析了四种情况下湍流通量和温度变化的预算,它们是由雷诺数为150(基于摩擦速度)和普朗特数为0.71的不可压缩周期性通道流动的直接数值模拟获得的,并进行了四种情况的分析:壁(常数Dirichlet),局部施加的热通量(常数Neumann),热交换系数(Robin)和3D共轭传热。与温度变化有关的耗散率受热边界条件的强烈影响。对于非共轭情况,可以通过简单的分析来确定边界条件,温度变化和墙体散热率的墙体法线部分之间的联系。对于共轭情况,固态域中热场的两点相关性证实了非常大规模的热结构的存在。 (C)2015 Elsevier Inc.保留所有权利。

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