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Effects of particle nonsphericity and radiation polarization on retrieving dust properties from MODIS observations

机译:粒子非球面度和辐射极化对MODIS观测尘埃特性的影响

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The scattering and radiative properties of mineral dust aerosols at violet-to-blue (0.412,0.441, and 0.470 urn) and red (0.650 urn) wavelengths are investigated. To account for the effect of particle nonsphericity on the optical properties of dust aerosols, in the present study, these particles are assumed to be spheroids. A combination of the T-matrix method and an improved geometric optics method is applied to the computation of the single-scattering properties of spheroidal particles with size parameters ranging from the Rayleigh to geometric optics regimes. For comparison, the Lorenz-Mie theory is employed to compute the optical properties of spherical dust particles that have the same volumes as their nonspherical counterparts. The differences between the phase functions of spheroidal and spherical particles lead to quite different lookup tables involved in retrieving dust aerosol properties. Moreover, the applicability of a hybrid approach based on the spheroid model for the phase function and the sphere model for the other phase matrix elements is also demonstrated. The present sensitivity study, employing the moderate resolution imaging spectroradiometer (MODIS) measurements and the fundamental principle of the Deep Blue algorithm, illustrates that neglecting the nonsphericity of dust particles usually leads to an underestimate of retrieved aerosol optical depth; although, depending on the scattering angle, an overestimate is noted in some cases. Furthermore, the effect of including full polarization treatment in forward radiative transfer simulation on dust property retrieval is also investigated. It is found that the effect of radiation polarization on the Deep Blue dust property retrieval is not negligible if the retrieval is based on two violet—blue channels centered at 0.412 and 0.470 μm.
机译:研究了矿物粉尘气溶胶在紫色到蓝色(0.412、0.441和0.470微米)和红色(0.650微米)波长下的散射和辐射特性。为了解决颗粒非球形性对粉尘气溶胶光学特性的影响,在本研究中,假定这些颗粒为球体。 T矩阵方法和改进的几何光学方法的结合应用于大小参数范围从瑞利到几何光学范围的球形粒子的单散射特性的计算。为了进行比较,采用Lorenz-Mie理论来计算球形尘埃颗粒的光学性质,这些尘埃颗粒的体积与非球形尘埃的体积相同。球形和球形粒子的相函数之间的差异导致检索粉尘气溶胶特性时涉及的查找表完全不同。此外,还证明了基于球体模型的相位函数和球体模型其他相位矩阵元素的混合方法的适用性。当前的敏感性研究采用中分辨率成像光谱仪(MODIS)测量和深蓝算法的基本原理,表明忽略尘埃颗粒的非球形性通常会导致低估了所获得的气溶胶光学深度。尽管根据散射角度,在某些情况下会高估。此外,还研究了在前向辐射传递模拟中包括全极化处理对粉尘特性检索的影响。已发现,如果辐射极化基于两个紫光-蓝光通道,其中心分别为0.412和0.470μm,则辐射偏振对深蓝尘属性恢复的影响不可忽略。

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