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首页> 外文期刊>Advances in Mechanical Engineering >Adaptability analysis of radiative transport diffusion approximation in planar-graded-index media:
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Adaptability analysis of radiative transport diffusion approximation in planar-graded-index media:

机译:平面梯度折射率介质中辐射输运扩散近似的适应性分析:

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To study the applicability of diffusion approximation method, the influence of the optical thickness, scattering albedo, and wall emissivity of the examined medium on the accuracy of the diffusion approximation is analyzed. The accuracy is determined by comparison with results obtained by using the Monte Carlo method. By calculating the dimensionless radiation heat flux distributions at the bottom of the medium for various parameter combinations, the influence of each optical parameter is analyzed. In addition, the adaptability of the diffusion approximation method to the case of a gradient-index medium is examined. The results show that in the homogeneous-refractive-index medium and the gradient-index medium, the accuracy of diffusion approximation method is improved by an increase in the optical thickness or the scattering albedo and by a decrease in the wall emissivity. Moreover, the maximum relative errors are primarily distributed at the medium boundary and center. In the case of increased optical th...
机译:为了研究扩散近似方法的适用性,分析了被测介质的光学厚度,散射反照率和壁发射率对扩散近似精度的影响。通过与使用蒙特卡洛方法获得的结果进行比较来确定精度。通过针对各种参数组合计算介质底部的无量纲辐射热通量分布,可以分析每个光学参数的影响。另外,研究了扩散近似方法对梯度折射率介质的适应性。结果表明,在均质折射率介质和梯度折射率介质中,通过增加光学厚度或散射反照率并通过减小壁发射率,可以提高扩散近似方法的准确性。而且,最大相对误差主要分布在介质边界和中心。在增加光通量的情况下...

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