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Oriented Ice Crystals: A Single-Scattering Property Database for Applications to Lidar and Optical Phenomenon Simulations

机译:面向冰晶:用于LIDAR和光学现象模拟的应用程序的单散射属性数据库

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摘要

A database (TAMUoic2019) of the scattering, absorption, and polarization properties of horizontally oriented hexagonal plates (HOPs) and horizontally oriented hexagonal columns (HOCs) at three wavelengths (355, 532, and 1064 nm) is developed for applications to radiative transfer simulations and remote sensing implementations involving oriented ice crystals. The maximum dimension of oriented ice crystals ranges from 50 to 10 000 mu m in 165 discrete size bins. The database accounts for 94 incident directions. The single-scattering properties of oriented ice crystals are computed with the physical-geometric optics method (PGOM), which is consistent with the invariant-imbedding T-matrix method for particles with size parameters larger than approximately 100-150. Note that the accuracy of PGOM increases as the size parameter increases. PGOM computes the two-dimensional phase matrix as a function of scattering polar and azimuth angles, and the phase matrix significantly varies with the incident direction. To derive the bulk optical properties of ice clouds for practical radiative transfer applications, the optical properties of individual HOPs and HOCs are averaged over the probability distribution of the tilting angle of oriented ice crystals based on the use of the TAMUoic2019 database. Simulations of lidar signals associated with ice clouds based on the bulk optical properties indicate the importance of the fraction of oriented ice crystals and the probability distribution of the tilting angle. Simulations of optical phenomena caused by oriented ice crystals demonstrate that the computed single-scattering properties of oriented ice crystals are physically rational.
机译:在三个波长(355,532和1064nm)的水平取向六边形板(跳跃)和水平取向的六方柱(Hocs)的散射,吸收和偏振性能的数据库(Tamuoic2219)被开发用于辐射转移模拟的应用涉及取向冰晶的遥感实现。定向冰晶的最大尺寸范围为165个离散尺寸箱的50至10000μm。数据库占94个入射方向。用物理 - 几何光学方法(Pgom)计算取向冰晶的单散射性能,这与具有大于大约100-150的粒度的不变嵌入T矩阵方法一致。注意,随着尺寸参数的增加,PGOM的准确性增加。 PGOM根据散射极和方位角的函数计算二维相矩阵,并且相矩阵显着随入射方向而变化。为了获得实际辐射转移应用的冰云的堆积光学特性,基于使用Tamuoic2019数据库的定向冰晶倾斜角的倾斜角度的概率分布,平均各个跳跃和HOC的光学性质。基于散装光学性质的冰云相关的LIDAR信号的模拟表明取向冰晶的级分和倾斜角的概率分布的重要性。由定向冰晶引起的光学现象模拟表明,取向冰晶的计算单散射性质是物理合理的。

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