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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Assessing Superspheroids in Modeling the Scattering Matrices of Dust Aerosols
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Assessing Superspheroids in Modeling the Scattering Matrices of Dust Aerosols

机译:评估Superspheroids建模沙尘气溶胶的散射矩阵

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摘要

Atmospheric dust particles are known to have diverse and irregular morphologies. In order to account for nonsphericity, the spheroidal model with an aspect ratio distribution has been extensively used for modeling the optical properties of dust. The spheroidal model is superior to the spherical shape assumption, but it requires further improvement. In this study, superspheroids’ modeling capabilities were systematically examined by comprehensively comparing the spheroid’s and superspheroid’s scattering matrices. Superspheroids have one more degree of freedom than spheroids and can be nonspherical at an aspect ratio of unity. The invariant imbedding T-matrix and the improved geometrical optics methods were employed to compute superspheroids’ single-scattering properties with a wide distribution of aspect ratios and a number of roundness parameters. We then assessed the spheroidal and superspheroidal models’ applicability for simulating the scattering matrices of 25 dust samples from the Amsterdam-Granada Light Scattering Database. It was found that extreme aspect ratios for spheroids in reproducing the measurements were unnecessary if superspheroids were used. Even with equi-probable aspect ratio distribution, superspheroids with constrained roundness parameters (from 2.4 to 3.0) could achieve better performances in concurrently matching six nonzero scattering matrix elements from the laboratory measurements. Moreover, superspheroids demonstrated better performances than spheroids in achieving spectral consistency for modeling dust scattering matrices. Therefore, superspheroids appear to be highly promising for atmospheric radiative transfer and remote sensing applications.
机译:大气粉尘是已知的多元化和不规则形态。占nonsphericity,球状模型一个方面比分布广泛用于光学建模粉尘的性质。优于球形假设,但是它需要进一步改善。superspheroids的建模能力全面系统地检查比较球体和superspheroid散射矩阵。自由度比,可以球状体nonspherical长宽比的统一。不变嵌入t矩阵和改善几何光学的方法了计算superspheroids的单散射属性方面的广泛分布比率和圆度参数。然后评估了球状superspheroidal模型模拟的适用性散射矩阵25尘埃样本Amsterdam-Granada光散射数据库。发现比极端的方面在复制测量球状体如果使用superspheroids不必要的。与equi-probable比例分布,superspheroids限制的圆度参数(从2.4到3.0)可以获得更好的表演的同时匹配六个零散射矩阵元素从实验室测量。证明比球状体更好的表演在实现光谱一致性建模尘埃散射矩阵。superspheroids似乎高度承诺大气辐射传输和遥感应用程序。

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