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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >Scattering in thick multifractal clouds, Part II: Multiple scattering
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Scattering in thick multifractal clouds, Part II: Multiple scattering

机译:浓多重形云中的散射,第二部分:多重散射

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In Part I of this paper, we developed asymptotic approximations for single photon scattering in thick, highly heterogeneous, "Log-Levy" multifractal clouds. In Part II, theoretical multiple scattering predictions are numerically tested using Monte Carlo techniques, which show that, due to long range correlations, the photon paths are "subdiffusive" with the corresponding fractal dimensions tending to increase slowly with mean optical thickness. We develop reasonably accurate statistical relations between N scatter statistics in thick clouds and single scatter statistics in thin clouds. This is explored further using discrete angle radiative transfer (DART) approach in which the radiances decouple into non-interacting families with only four (for 2-D clouds) radiance directions each. Sparse matrix techniques allow for rapid and extremely accurate solutions for the transfer: the accuracy is only limited by the spatial discretization. By "renormalizing" the cloud density, we relate the mean transmission statistics to those of an equivalent homogeneous cloud. This simple idea is remarkably effective because two complicating effects act in contrary directions: the "holes" which lead to increased single scatter transmission and the tendency for multiply scattered photons to become "trapped" in optically dense regions, thus decreasing the overall transmission.
机译:在本文的第一部分中,我们开发了在厚的,高度异质的“对数小度”多重分形云中单光子散射的渐近近似。在第二部分中,使用蒙特卡洛技术对理论上的多重散射预测进行了数值测试,结果表明,由于长程相关性,光子路径是“亚漫射的”,相应的分形维数倾向于随着平均光学厚度的增加而缓慢增加。我们在厚云中的N散射统计与薄云中的单散射统计之间建立了合理准确的统计关系。这将使用离散角度辐射传输(DART)方法进行进一步探讨,在该方法中,辐射将解耦为非交互族,每个族仅具有四个(对于二维云)辐射方向。稀疏矩阵技术可为传输提供快速且极其准确的解决方案:准确性仅受空间离散化限制。通过“重新规范化”云密度,我们将平均传输统计与等效的均质云的传输统计联系起来。这个简单的想法之所以非常有效,是因为两个复杂的作用在相反的方向上起作用:“孔”导致单次散射透射率增加,并且多个散射光子趋于“捕获”在光致密区域中,从而降低了总体透射率。

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