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The Influence of Thermodynamic Phase on the Retrieval of Mixed-Phase Cloud Microphysical and Optical Properties in the Visible and Near Infrared Region

机译:热力学相对可见光和近红外区混合相云微物理和光学性质反演的影响

摘要

Cloud microphysical and optical properties are inferred from the bidirectional reflectances simulated for a single-layered cloud consisting of an external mixture of ice particles and liquid droplets. The reflectances are calculated with a rigorous discrete ordinates radiative transfer model and are functions of the cloud effective particle size, the cloud optical thickness, and the values of the ice fraction in the cloud (i.e., the ratio of ice water content to total water content). In the present light scattering and radiative transfer simulations, the ice fraction is assumed to be vertically homogeneous; the habit (shape) percentage as a function of ice particle size is consistent with that used for the Moderate Resolution Imaging Spectroradiometer (MODIS) operational (Collection 4 and earlier) cloud products; and the surface is assumed to be Lambertian with an albedo of 0.03. Furthermore, error analyses pertaining to the inference of the effective particle sizes and optical thicknesses of mixed-phase clouds are performed. Errors are calculated with respect to the assumption of a cloud containing solely liquid or ice phase particles. The analyses suggest that the effective particle size inferred for a mixed-phase cloud can be underestimated (or overestimated) if pure liquid phase (or pure ice phase) is assumed for the cloud, whereas the corresponding cloud optical thickness can be overestimated (or underestimated).
机译:云的微观物理和光学特性是从模拟的单层云的双向反射率推断出来的,该单层云由冰粒和液滴的外部混合物组成。反射率是使用严格的离散纵坐标辐射传递模型计算的,并且是云有效粒径,云光学厚度以及云中冰分数的值(即冰水含量与总水含量之比)的函数。 )。在目前的光散射和辐射传递模拟中,假定冰的比例在垂直方向上是均匀的。习惯(形状)百分比与冰粒大小的函数关系与用于中等分辨率成像光谱仪(MODIS)的运行中(集合4及更早版本)云产品的习惯(形状)百分比一致;假定该表面为朗伯型,反射率为0.03。此外,进行与推断混合相云的有效粒径和光学厚度有关的误差分析。根据仅包含液相或冰相颗粒的云的假设计算误差。分析表明,如果假设纯相(或纯冰相)是混合云,则可以低估(或高估)混合相云的有效粒径,而相应云的光学厚度可以高估(或低估) )。

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