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Efficient calculation of orientationally averaged scattering from complex-geometry ice particles

机译:有效计算复杂几何冰粒的方向平均散射

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A direct-solver based domain decomposition method is applied to efficiently compute orientationally averaged scattering efficiencies from complex-shaped ice pristine and aggregation. This numerically powerful method, known as the characteristic basis function method (CBFM), is based on the generation of a new set of basis function adapted to the geometry of the scatterer, in order to significantly reduce the numerical size of the EM problem. Being better adapted to multiple excitation problems, the CBFM enables us to achieve a significant reduction in CPU time in comparison to DDScat, a widely used implementation of the discrete dipole approximation (DDA), while maintaining a satisfactory level of accuracy.
机译:一种基于直接求解器的区域分解方法被用来从复杂形状的冰原始和聚集中有效地计算取向平均散射效率。这种数字功能强大的方法被称为特征基函数方法(CBFM),它基于生成适用于散射体几何形状的一组新的基函数,以显着减小EM问题的数值大小。与DDScat(一种广泛使用的离散偶极子逼近(DDA)的实现)相比,CBFM能够更好地适应多种激励问题,从而使我们能够显着减少CPU时间。同时保持令人满意的精度。

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