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Modeling heat transfer in gas-particle mixtures: Calculation of the macro-scale heat exchange in Eulerian-Lagrangian approaches using spatial averaging

机译:气体颗粒混合物中的传热模拟传热:使用空间平均计算欧拉 - 拉格朗日方法的宏观级热交换

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Heat transfers in dilute gas-particle mixtures are often modeled using hybrid Euler-Lagrange descriptions, treating the carrier fluid via an Eulerian representation and following each particle in a Lagrangian framework. One of the focal issues in these models is the calculation of the macro-scale heat transfer between the continuous phase and particles. In the standard approach, the heat transfer for each particle is considered to vary linearly with the average temperature difference between the particle and the fluid. Here, we use the method of volume averaging with closure to filter the heat transfer equations at the micro-scale and derive a closed form of the heat transfer rate, which is significantly different from the standard case. The primary difference is that the heat transfer for a given particle does not only depend on the temperature of the particle but also depends on the temperatures of all other particles within the averaging volume. This yields a matrix of heat exchange coefficients that captures indirect particle particle exchanges at macro-scale. Using simple model cases, we validate our approach, compare it to the standard heat transfer model and show that it degenerates toward the standard model only in specific cases. (C) 2019 Elsevier Ltd. All rights reserved.
机译:稀释气体颗粒混合物中的热转运通常使用混合欧拉拉伸器描述来建模,通过欧拉表示,并在拉格朗日框架中追随每个颗粒。这些模型中的一个焦点问题是计算连续相和粒子之间的宏观传热。在标准方法中,认为每个颗粒的热传递被认为随着颗粒和流体之间的平均温度差而线性变化。这里,我们使用具有闭合的体积平均方法,以在微尺度下过滤传热方程,并导出与标准情况不同的传热速率的封闭形式。主要差异是给定颗粒的热传递不仅取决于颗粒的温度,而且取决于平均体积内所有其他颗粒的温度。这产生了在宏观级捕获间接粒子粒子交换的热交换系数的基质。使用简单的模型案例,我们验证了我们的方法,将其与标准传热模型进行比较,并显示它仅在特定情况下朝标准模型退化。 (c)2019年elestvier有限公司保留所有权利。

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