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P1- approximation method for radiative heat transfer in Semitransparent graded index medium

机译:半透明分级指数介质辐射传热的P1-近似方法

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As a fast Algorithm, the P1-approximation method has been widely applied to the inversion of the radiative transfer equation. In order to study the solving precision of the P1-approximation in the graded index medium, two cases of radiative heat transfer in two-dimensional rectangular gray semitransparent medium enclosed by opaque and diffuse boundary are considered. The P1-approximation method is extended to solve the radiative transfer problem in a c semitransparent graded index and even medium, the temperature field and radiative heat flux are compared with the results obtained by the curved Monte Carlo method in references. The results show that the optical depth and the refractivity gradient of the medium have great influence on the solving precision of the P1-approximation. The solving precision of the P1-approximation will be worse because of the uneven heat flux distribution induced by the curved ray trajectories in the graded index medium, but the solving precision will be revised under special circumstances for the anisotropic scattering media.
机译:作为一种快速算法,P1近似方法已广泛应用于辐射传输方程的反转。为了研究梯度指数介质中P1近似的求解精度,考虑了由不透明和漫射边界包围的二维矩形灰色半透半透介质中的两种辐射传热。延伸P1近似方法以解决C半透明分子指数甚至介质中的辐射转移问题,将温度场和辐射热通量与参考文献中的弯曲蒙特卡罗方法获得的结果进行比较。结果表明,光学深度和介质的折射率梯度对P1近似的求解精度产生了很大的影响。在P1-近似的解决精度会变差,因为通过在渐变折射率介质的弯曲的光线轨迹引起的不均匀的热通量分布,但解决精度将在特殊情况下被修改用于各向异性散射介质。

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