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首页> 外文期刊>International Journal of Heat and Fluid Flow >Large eddy simulation in Code_Saturne of thermal mixing in a T junction with brass walls
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Large eddy simulation in Code_Saturne of thermal mixing in a T junction with brass walls

机译:Code_Saturne中的大涡模拟与黄铜壁的T形结中的热混合

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Following on from Kuhn et al (2010) we study the capability of large eddy simulation with conjugate heat transfer to predict thermal fluctuations with thermal mixing. Wall functions are used to model the wall heat transfer. Comparison with experimental results show that the temperature variance on the outer skin of the solid is well predicted by the simulation. It is shown that the variance of thermal flux in the fluid closely maps the temperature variance at the outer boundary of the solid. Since the variance of thermal flux is closely related to the dissipation of temperature variance it can be concluded that the dissipation of temperature variance in the fluid is linked to temperature variance in the solid. Analysis of the equation of the temperature variance in the solid confirms this is indeed the case. It is the dissipation of temperature variance in the fluid that characterizes how the temperature variance penetrates the solid. Thus RANS modelling can be used to predict thermal variance in solids provided that there is an accurate model for the dissipation of temperature variance at the wall and an equation for the thermal variance in the solid is solved. (C) 2016 Elsevier Inc. All rights reserved.
机译:继Kuhn等人(2010年)之后,我们研究了具有共轭传热的大涡模拟的能力,以预测热混合引起的热波动。墙函数用于模拟墙的热传递。与实验结果的比较表明,通过模拟可以很好地预测固体外表层的温度变化。结果表明,流体中的热通量变化紧密地映射了固体外边界处的温度变化。由于热通量的变化与温度变化的耗散密切相关,因此可以得出结论,流体中温度变化的耗散与固体中的温度变化有关。对固体中温度变化方程的分析证实确实是这种情况。流体中温度变化的耗散是温度变化如何渗透固体的特征。因此,只要有一个精确的壁面温度变化消散模型,并且求解了固体中温度变化的方程,就可以使用RANS建模来预测固体中的温度变化。 (C)2016 Elsevier Inc.保留所有权利。

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