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Potential accuracies of retrieving the vertical profiles of atmospheric parameters (satellite-based transmittance method): 2. Spectral coefficient of aerosol extinction

机译:检索大气参数垂直剖面的潜在精度(基于卫星的透射法):2.气溶胶消光的光谱系数

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摘要

Closed-loop numerical experiments are carried out to analyze the potential accuracies of retrieving the vertical profiles of the spectral coefficient of aerosol extinction (SCAE) from slant-path atmospheric transmittance measurements with the SAGE-III spectrometer launched aboard the Meteor-3M satellite. The SCAE retrieval error depends significantly on the SCAE approximation. The minimum SCAE retrieval errors are achieved by using an aerosol extinction optimal parametrization, which lies in the expansion of variations in the aerosol extinction coefficient into the first few vectors of the quasi-empirical basis. An optimal linear parametrization with four or five parameters is the most promising to interpret remote measurements of slant-path atmospheric transmittance. The advantages of such a parametrization are especially significant when the aerosol extinction coefficients are retrieved in the short-wavelength spectral range. In this range, the errors of retrieval for optimal parametrization can be several times smaller than those for the Lumpe parametrization. Highly accurate SCAE values retrieved by using the optimal parametrizations can simplify the solution of the subsequent inverse problem of retrieving the microphysical characteristics of stratospheric aerosol.
机译:进行了闭环数值实验,以分析利用流星3M卫星上发射的SAGE-III光谱仪从倾斜路径大气透射率测量中获取气溶胶消光光谱系数(SCAE)的垂直剖面的潜在精度。 SCAE检索误差很大程度上取决于SCAE近似值。通过使用气溶胶消光最佳参数化可实现最小的SCAE恢复误差,这是将气溶胶消光系数的变化扩展到准经验基础的前几个向量中。具有四个或五个参数的最佳线性参数化最有可能用于解释对倾斜路径大气透射率的远程测量。当在短波长光谱范围内获得气溶胶消光系数时,这种参数化的优势尤其显着。在此范围内,最佳参数化的检索误差可能比块参数化的误差小几倍。通过使用最佳参数化获得的高精度SCAE值可以简化随后的反问题的解决方案,该反问题的解决是检索平流层气溶胶的微物理特征。

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