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Retrieval of aerosol parameters from multiwavelength lidar: investigation of the underlying inverse mathematical problem

机译:从多波长激光雷达中获取气溶胶参数:潜在的逆数学问题研究

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摘要

We present an investigation of some important mathematical and numerical features related to the retrieval of microphysical parameters [complex refractive index, single-scattering albedo, effective radius, total number, surface area, and volume concentrations] of ambient aerosol particles using multiwavelength Raman or high-spectral-resolution lidar. Using simple examples, we prove the non-uniqueness of an inverse solution to be the major source of the retrieval difficulties. Some theoretically possible ways of partially compensating for these difficulties are offered. For instance, an increase in the variety of input data via combination of lidar and certain passive remote sensing instruments will be helpful to reduce the error of estimation of the complex refractive index. We also demonstrate a significant interference between Aitken and accumulation aerosol modes in our inversion algorithm, and confirm that the solutions can be better constrained by limiting the particle radii. Applying a combination of an analytical approach and numerical simulations, we explain the statistical behavior of the microphysical size parameters. We reveal and clarify why the total surface area concentration is consistent even in the presence of non-unique solution sets and is on average the most stable parameter to be estimated, as long as at least one extinction optical coefficient is employed. We find that for selected particle size distributions, the total surface area and volume concentrations can be quickly retrieved with fair precision using only single extinction coefficients in a simple arithmetical relationship. (C) 2016 Optical Society of America
机译:我们对一些重要的数学和数值特征进行了研究,这些特征与使用多波长拉曼光谱仪或高光谱仪检索环境气溶胶颗粒的微物理参数[复杂折射率,单散射反照率,有效半径,总数,表面积和体积浓度]有关。光谱分辨率的激光雷达。通过简单的例子,我们证明了反解的非唯一性是检索困难的主要根源。提供了部分补偿这些困难的一些理论上可行的方法。例如,通过激光雷达和某些无源遥感仪器的组合,输入数据种类的增加将有助于减少复折射率的估计误差。在我们的反演算法中,我们还证明了Aitken模式与累积气溶胶模式之间存在显着干扰,并确认可以通过限制粒子半径来更好地约束解决方案。应用分析方法和数值模拟相结合,我们解释了微观物理尺寸参数的统计行为。我们揭示并阐明了为什么总表面积浓度即使在存在非唯一溶液集的情况下也是一致的,并且只要使用至少一种消光光学系数,平均而言它是最稳定的待估计参数。我们发现,对于选定的粒度分布,可以使用简单的算术关系中的单个消光系数,以相当的精度快速检索总表面积和体积浓度。 (C)2016美国眼镜学会

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