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Integral equation method applied to radiative transfer in a 2-D absorbing-scattering refractive medium

机译:积分方程法应用于二维吸收散射折射介质中的辐射传递

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In this paper, an investigation of radiative transfer in a rectangular medium with one-dimensional or two-dimensional graded index is presented. The integral equations of intensity moments are derived and then the cases of a cold medium exposed to diffuse irradiation at the left boundary are solved by the Nystroem method. The results obtained by solving integral equations are in excellent agreement with those obtained by the Monte Carlo method and the discrete ordinates method. For the case with an increasing refractive index in the direction to the right boundary, the distribution of refractive index enhances the radiation in the direction to the right, and so the half-range flux toward the right boundary increases with the increase of the gradient of refractive index. Besides, the half-range flux toward the right boundary decreases as the position considered approaches the top or bottom boundary.
机译:本文对一维或二维梯度指数的矩形介质中的辐射传递进行了研究。推导了强度矩的积分方程,然后用Nystroem方法求解了冷介质在左边界处受到扩散辐射的情况。通过求解积分方程获得的结果与通过蒙特卡洛方法和离散坐标方法获得的结果非常吻合。对于在向右边界方向增加的折射率的情况,折射率的分布会增强向右方向的辐射,因此,向右边界的半程通量随着θ梯度的增加而增加。折射率。此外,随着所考虑的位置接近顶部或底部边界,朝向右边界的半程通量减小。

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