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On aerosol direct shortwave forcing and the Henyey-Greenstein phase function

机译:气溶胶直接短波强迫与Henyey-Greenstein相函数

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This technical note extends previous Mie calculations to show that there are complex relationships between the asymmetry parameter g and the upscatter fractions for monodirectional incident radiation beta(mu(0)). Except for intermediate zenith angles and for the upscatter fraction for diffuse radiation, there are significant differences between beta(mu(0)) predicted by the Mie theory and that approximated by a Henyey-Greenstein phase function. White the Henyey-Greenstein phase function is widely used in radiative transfer calculations to characterize aerosol or cloud droplet scattering, it may cause important discrepancies in the computation of the aerosol direct radiative forcing, depending on solar zenith angle, aerosol size, and refractive index. The implications of this work for aerosol and climate-related studies are also discussed. [References: 20]
机译:本技术说明扩展了先前的Mie计算,以表明不对称参数g与单向入射辐射beta(mu(0))的向上散射分数之间存在复杂的关系。除了中间天顶角和散射辐射的上散射分数外,由Mie理论预测的β(mu(0))与由Henyey-Greenstein相函数近似的beta(mu(0))之间存在显着差异。白色Henyey-Greenstein相函数广泛用于辐射传递计算中以表征气溶胶或云滴散射,它可能会在气溶胶直接辐射强迫的计算中引起重要差异,具体取决于太阳天顶角,气溶胶尺寸和折射率。还讨论了这项工作对气溶胶和气候相关研究的意义。 [参考:20]

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