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Effect of Thin Cirrus Clouds on Dust Optical Depth Retrievals From MODIS Observations

机译:薄卷云对尘埃光学深度反演的影响

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The effect of thin cirrus clouds in retrieving the dust optical depth from MODIS observations is investigated by using a simplified aerosol retrieval algorithm based on the principles of the Deep Blue aerosol property retrieval method. Specifically, the errors of the retrieved dust optical depth due to thin cirrus contamination are quantified through the comparison of two retrievals by assuming dust-only atmospheres and the counterparts with overlapping mineral dust and thin cirrus clouds. To account for the effect of the polarization state of radiation field on radiance simulation, a vector radiative transfer model is used to generate the lookup tables. In the forward radiative transfer simulations involved in generating the lookup tables, the Rayleigh scattering by atmospheric gaseous molecules and the reflection of the surface assumed to be Lambertian are fully taken into account. Additionally, the spheroid model is utilized to account for the nonsphericity of dust particles in computing their optical properties. For simplicity, the single-scattering albedo, scattering phase matrix, and optical depth are specified a priori for thin cirrus clouds assumed to consist of droxtal ice crystals. The present results indicate that the errors in the retrieved dust optical depths due to the contamination of thin cirrus clouds depend on the scattering angle, underlying surface reflectance, and dust optical depth. Under heavy dusty conditions, the absolute errors are comparable to the predescribed optical depths of thin cirrus clouds.
机译:通过使用基于深蓝色气溶胶特性检索方法原理的简化气溶胶检索算法,研究了薄卷云在从MODIS观测中获取尘埃光学深度方面的作用。具体来说,通过比较两次反演,通过假设只有尘埃的大气以及具有重叠矿物尘埃和薄卷云的对应物,通过两次反演的比较来量化由于稀薄的卷云污染引起的反演尘埃光学深度的误差。为了考虑辐射场的极化状态对辐射仿真的影响,使用矢量辐射传递模型生成查找表。在生成查找表所涉及的正向辐射传递模拟中,充分考虑了大气气体分子的瑞利散射和假定为朗伯型的表面反射。另外,球体模型用于在计算尘埃光学特性时考虑尘埃颗粒的非球形性。为简单起见,对于假定由droxtal冰晶组成的薄卷云,先验地指定了单散射反照率,散射相位矩阵和光学深度。目前的结果表明,由于薄卷云的污染而导致的尘埃光学深度的取回误差取决于散射角,下表面反射率和尘埃光学深度。在多尘的条件下,绝对误差与薄卷云的上述光学深度相当。

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