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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Microwave scattering properties of sand particles: Application to the simulation of microwave radiances over sandstorms
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Microwave scattering properties of sand particles: Application to the simulation of microwave radiances over sandstorms

机译:沙粒的微波散射特性:在沙尘暴微波辐射模拟中的应用

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The single-scattering properties of sand/dust particles assumed to be ellipsoids are computed from the discrete dipole approximation (DDA) method at microwave frequencies 6.9-89.0 GHz in comparison with the corresponding Lorenz-Mie solutions. It is found that the single-scattering properties of sand particles are strongly sensitive to the shapes of the particles. The bulk scattering properties of sandstorms composed of spherical or nonspherical particles are investigated by averaging the single-scattering properties of these particles over log-normal particle size distributions. Furthermore, a vector radiative transfer model is used to simulate microwave radiances. The microwave brightness temperatures in the vertical polarization model are essentially not sensitive to sand particle habit, whereas microwave brightness temperature polarization differences are influenced by particle habit. It is shown that microwave brightness temperatures and brightness temperature polarization differences may be useful for estimating the effective particle sizes and mass loading of sandstorms. (C) 2007 Elsevier Ltd. All rights reserved.
机译:与相应的Lorenz-Mie解相比,在6.9-89.0 GHz微波频率下,通过离散偶极近似(DDA)方法计算了假定为椭球体的沙/粉尘颗粒的单散射特性。已经发现,沙粒的单散射特性对沙粒的形状非常敏感。通过在对数正态粒度分布上平均这些粒子的单散射特性,研究了由球形或非球形粒子组成的沙尘暴的整体散射特性。此外,矢量辐射传递模型用于模拟微波辐射。垂直极化模型中的微波亮度温度对沙粒习惯基本不敏感,而微波亮度温度极化差异受沙粒习惯的影响。结果表明,微波亮度温度和亮度温度极化差可用于估算沙尘暴的有效粒径和质量负荷。 (C)2007 Elsevier Ltd.保留所有权利。

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