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首页> 外文期刊>Journal of Aerosol Science >Modeling of the scattering and radiative properties of nonspherical dust-like aerosols
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Modeling of the scattering and radiative properties of nonspherical dust-like aerosols

机译:非球形粉尘气溶胶的散射和辐射特性建模

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The optical and radiative properties of dust particles in solar and thermal infrared regions are investigated.Dust particles are assumed to be spheres and spheroids for a comparison aimed at understanding the nonsphericity effect of these particles on the radiation at the top of a dusty atmosphere.The classical Lorenz-Mie theory is employed to compute the optical properties of spherical dust particles.To compute the single-scattering properties of spheroidal dust particles,a combination of the T-matrix method and an approximate method is used in the present study.In the approximate method,applicable to large particles,the geometric optics method is applied to the computation of the scattering phase matrix.A combination of the solution from the geometric optics method and the contribution of the so-called edge effect is used to compute the extinction efficiency of a spheroidal particle whose absorption efficiency is computed by adding the so-called above-and below-edge effect(a term from the well-known complex angular momentum theory)to the geometric optics result.Numerical results show that the results from the T-matrix method and the present approximate approach converge at a size parameter of 50 for computing the integrated scattering properties(i.e.,the extinction efficiency,single-scattering albedo,and asymmetry factor).Additionally,the phase functions computed from the two methods are quite similar for size parameters larger than 40 although some considerable differences may still be noticed for other phase matrix elements.Furthermore,the effect of surface roughness on the single-scattering properties of spheroidal particles is discussed.The present radiative transfer simulations illustrate the nonsphericity effect of dust particles is significant at short wavelengths,however,not at the thermal infrared wavelengths.
机译:研究了太阳和热红外区域中尘埃颗粒的光学和辐射特性,假设尘埃颗粒为球形和椭球形,以进行比较,目的是了解这些尘埃对尘土大气顶部辐射的非球形影响。本文采用经典的Lorenz-Mie理论计算球形尘埃颗粒的光学特性。为计算球形尘埃颗粒的单散射特性,本研究采用了T矩阵法和近似方法的组合。近似方法,适用于大颗粒,将几何光学方法应用于散射相矩阵的计算。结合几何光学方法的解和所谓的边缘效应的贡献来计算消光效率球状粒子的吸收效率是通过加上所谓的上缘和下缘效应(术语fro数值结果表明,T矩阵方法和当前的近似方法的结果收敛于大小参数50,以计算积分散射特性(即消光效率,单散射反照率和不对称因子)。另外,对于大于40的尺寸参数,这两种方法计算出的相位函数非常相似,尽管对于其他相位矩阵元素仍可能会注意到一些显着差异。本文讨论了表面粗糙度对球形颗粒单散射特性的影响。目前的辐射传递模拟表明,粉尘颗粒的非球形性效应在短波长下很明显,而在热红外波长下则不明显。

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