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Lattice Boltzmann Method Applied to Variable Thermal Conductivity Conduction and Radiation Problems

机译:格子Boltzmann方法在可变热导率传导和辐射问题中的应用

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In the present article, application of the lattice Boltzmann method has been extended to solve the energy equation of a problem involving temperature dependent thermal conductivity. To validate the formulation, transient heat conduction in a planar medium with and without temperature dependent thermal conductivity was analyzed. Next, a problem involving transient conduction and radiation in a participating medium was considered. To compare with the performance of the lattice Boltzmann method, the energy equation was also solved using the finite difference method. The discrete ordinates method was used to compute the radiative information in both methods. After benchmarking the results against those available in the literature, temperature and heat flux results in the two methods were compared for different parameters. The results of the two methods were found to compare very well.
机译:在本文中,晶格玻尔兹曼方法的应用已扩展到解决涉及温度依赖的导热系数的能量方程。为了验证配方,分析了在有和没有温度依赖性导热系数的平面介质中的瞬态热传导。接下来,考虑涉及参与介质中的瞬时传导和辐射的问题。为了与晶格玻尔兹曼方法的性能进行比较,还使用有限差分法求解了能量方程。两种方法都使用离散纵坐标方法来计算辐射信息。将结果与文献中的结果进行基准比较后,比较两种方法中不同参数的温度和热通量结果。发现这两种方法的结果可以很好地进行比较。

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