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Retrieval of aerosol size distributions and integral properties from simulated extinction measurements at SAGE III wavelengths by the linear minimizing error method

机译:通过线性最小误差法从SAGE III波长的模拟消光测量中检索气溶胶尺寸分布和整体性质

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摘要

The retrieval or aerosol size distribution and integral properties from simulated aerosol extinction measurements of the new satellite instrument, the Stratospheric Aerosol and Gas Experiment (SAGE) III, is investigated The retrieval method used in this study is the newly proposed linear minimizing error (LME) method, This approach assumes that the aerosol size distribution can be approximated by a histogram of number density as a function of particle size. The retrieved number density in each hin and the integral properties, including surface area and volume densities, are expressed as a linear combination of the SAGE III aerosol extinction coefficients at eight or fewer wavelengths. The coefficients in the weighted linear combination are obtained by minimizing the average of retrieval errors oa cr a set of testing size distributions. The choice of aerosol channels for retrieval was first determined by comparing the average composite errors of the integral properties retrieved from different combinations of aerosol extinctions, The accuracy of the proposed method was studied by comparing the actual and retrieved properties for six aerosol size distributions, Results of this investigation indicate that unimodal, as well as bimodal, lognormal size distributions call be retrieved with reasonable accuracy, When all eight aerosol extinctions are available for retrieval, the average composite errors, which include systematic errors and errors due to measurement uncertainties for the retrieval of surface area and volume densities, are 9.4+/-4.3 and 4.7+/-2.0%, respectively. The retrieved aerosol integral properties are more accurate than those retrieved from SAGE II. However, ii is not advantageous to use all eight SAGE III wavelengths for retrieval. The proper choice of aerosol extinctions for retrieval is elucidated. The derived formulas listed in this paper can be easily used by investigators to retrieve aerosol integral properties and estimate the retrieval errors from SAGE III aerosol extinctions at different altitudes for a variety of purposes. The application of the LME method to instrumental design is discussed. [References: 22]
机译:研究了新卫星仪器“平流层气溶胶实验”(SAGE)III的模拟气溶胶消灭测量中的气溶胶粒径分布和整体性质,其研究方法是新提出的线性最小误差(LME)该方法假设气溶胶尺寸分布可以通过数密度直方图作为颗粒尺寸的函数来近似。每个hin中获得的数密度以及包括表面积和体积密度在内的整体特性表示为八个或更少波长下SAGE III气溶胶消光系数的线性组合。加权线性组合中的系数是通过最小化一组测试尺寸分布的平均检索误差而获得的。首先通过比较从不同消光组合中获得的整体特性的平均复合误差来确定用于检索的气溶胶通道的选择,并通过比较六个气溶胶尺寸分布的实际和检索到的特性来研究该方法的准确性,结果这项研究表明,可以以合理的精度检索单峰以及双峰对数正态分布,当所有八个气溶胶消光都可供检索时,平均复合误差(包括系统误差和由于测量不确定性导致的误差)将被检索出来。表面积和体积密度的分别为9.4 +/- 4.3和4.7 +/- 2.0%。检索到的气溶胶积分特性比从SAGE II检索到的更精确。但是,ii使用所有八个SAGE III波长进行检索是不利的。阐明了适当选择的气溶胶消光剂进行回收。研究人员可以轻松地使用本文列出的公式来检索气溶胶的整体特性,并根据不同的目的,根据不同海拔高度的SAGE III气溶胶的灭绝估算出误差。讨论了LME方法在仪器设计中的应用。 [参考:22]

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