首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Ability of multiangle remote sensing observations to identify and distinguish mineral dust types: Optical models and retrievals of optically thick plumes
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Ability of multiangle remote sensing observations to identify and distinguish mineral dust types: Optical models and retrievals of optically thick plumes

机译:多角度遥感观测能够识别和区分矿物粉尘类型的能力:光学模型和光学粗羽的检索

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摘要

We present a systematic theoretical study of atmospheric mineral dust radiative properties, focusing on implications for multiangle and multispectral remote sensing. We model optical properties of complex, nonspherical mineral dust mixtures in three visible-near-infrared satellite channels: 0.550, 0.672, and 0.866 μm, accounting for recent field and laboratory data on mineral dust morphology and mineralogy. To model the optical properties of mineral dust, we employ the discrete dipole approximation technique for particles up to 2 μm diameter and the T matrix method for particles up to 12 μm. We investigate the impact of particle irregularity, composition, and size distribution on particle optical properties, and we develop optical models for representative natural mineral dust composition-size-shape types. Sensitivity studies with these models indicate that Multiangle Imaging Spectroradiometer (MISR) data should be able to distinguish plate-like from grain-like dust particles, weakly from strongly absorbing compositional types, and monomodal from bimodal size distributions. Models containing grain-like, weakly absorbing, bimodal distributions of dust particles were favored for optically thick Saharan and Asian dust plume examples, whereas strongly absorbing and plate-like particles were rejected. We will present detailed, systematic MISR sensitivity studies and analysis of more complex field cases using the optical models derived here in a future paper.
机译:我们对大气矿物尘埃辐射特性进行了系统的理论研究,重点是对多角度和多光谱遥感的意义。我们对三个非可见近红外卫星通道(0.550、0.672和0.866μm)中复杂的非球形矿物粉尘混合物的光学特性进行建模,考虑了有关矿物粉尘形态和矿物学的最新领域和实验室数据。为了模拟矿物粉尘的光学特性,我们对直径最大为2μm的颗粒采用离散偶极近似技术,对最大直径为12μm的颗粒采用T矩阵法。我们研究了颗粒不规则性,组成和尺寸分布对颗粒光学性能的影响,并开发了具有代表性的天然矿物粉尘组成-尺寸-形状类型的光学模型。使用这些模型进行的敏感性研究表明,多角度成像光谱仪(MISR)数据应该能够区分板状颗粒状尘埃颗粒,弱吸收性强组合物类型以及双峰尺寸分布的单峰。对于光学上较厚的撒哈拉和亚洲尘埃羽流示例,更喜欢使用包含颗粒状,弱吸收性,双峰分布的尘埃颗粒的模型,而拒绝使用具有强吸收性和板状颗粒的模型。我们将在以后的论文中使用从此处得出的光学模型,进行详细,系统的MISR敏感性研究,并对更复杂的现场案例进行分析。

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