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首页> 外文期刊>International Journal of Heat and Mass Transfer >A three-scale homogenization algorithm for coupled conduction- radiation problems in porous materials with multiple configurations
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A three-scale homogenization algorithm for coupled conduction- radiation problems in porous materials with multiple configurations

机译:具有多种配置的多孔材料耦合传导-辐射问题的三尺度均质化算法

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摘要

This work establishes a novel three-scale homogenization algorithm to predict heat transfer performance of porous materials with multiple periodic configurations. The heterogeneities of porous structures are considered by periodic distributions of unit cells on the microscale and mesoscale. A new micro-meso-macro formula based on homogenization methods and multiscale asymptotic expansions is given at first. Two types of unit cell solutions in microscale and mesoscale are obtained by solving the distinct multiscale cell functions. Also, two kinds of homogenization coefficients are calculated by up-scaling procedure, and the homogenization equations are defined on global structure. Further, the temperature and heat flux fields are established as three-scale approximate solutions by assembling the various local cell solutions and homogenization solutions. Then, the associated finite element algorithm based on the three-scale homogenization methods is proposed in detail. Finally, some numerical examples are reported to validate the methods. They illustrate that the three-scale homogenization methods presented in this work are effective and accurate for calculating the heat transfer performance of the porous materials with multiple configurations.
机译:这项工作建立了一种新颖的三尺度均质化算法,以预测具有多个周期性构型的多孔材料的传热性能。多孔结构的异质性是通过微尺度和中尺度上晶胞的周期性分布来考虑的。首先给出了基于均质化方法和多尺度渐近展开的新的微介观宏公式。通过求解不同的多尺度单元函数,可以得到微观和中尺度的两种类型的晶胞解决方案。此外,通过按比例放大程序计算出两种均匀化系数,并且在整体结构上定义了均匀化方程。此外,通过组合各种局部电池溶液和均质溶液,将温度场和热通量场建立为三级近似解。然后,详细提出了基于三尺度均化方法的关联有限元算法。最后,报告了一些数值示例以验证该方法。他们表明,在这项工作中提出的三级均质化方法对于计算具有多种配置的多孔材料的传热性能是有效而准确的。

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