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Reproducing Kernel Particle Method for Radiative Heat Transfer in 1D Participating Media

机译:一维参与介质中辐射换热的再生核粒子方法

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The reproducing kernel particle method (RKPM), which is a Lagrangian meshless method, is employed for the calculation of radiative heat transfer in participating media. In the present method, for each discrete particle (i.e., spatial node) within a local support domain, the approximate formulas of the radiative intensity and its derivatives are constructed by the reproducing kernel interpolation function, and the residual function is obtained when these parameters are substituted into the radiative transfer equation. Then the least-squares point collocation technique (LSPCT) is introduced by minimizing the summation of residual function. Five test cases are considered and quantified to verify the meshless method, including isotropic scattering medium, first-order forward scattering medium, pure absorbing medium, absorbing scattering medium, and absorbing, scattering emitting medium. The results are in good agreement with the benchmark methods, showing the reproducing kernel particle method is an efficient, accurate, and stable method for the calculation of radiative transfer in participating media.
机译:再生核粒子法(RKPM)是一种拉格朗日无网格法,用于计算参与介质中的辐射热传递。在本方法中,对于局部支持域内的每个离散粒子(即空间节点),通过重现核内插函数构造辐射强度及其导数的近似公式,并在这些参数为时获得残差函数。代入辐射传递方程。然后通过最小化残差函数的总和来引入最小二乘点配置技术(LSPCT)。考虑并量化了五个测试案例以验证无网格方法,包括各向同性散射介质,一阶正向散射介质,纯吸收介质,吸收散射介质以及吸收,散射发射介质。结果与基准方法吻合良好,表明再生核粒子法是计算参与介质中辐射传递的有效,准确和稳定的方法。

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