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Two-wavelength lidar inversion algorithm for a two-component atmosphere

机译:两分量大气的两波长激光雷达反演算法

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摘要

A method for the boundary-value determination of aerosol extinction profiles from backscatter lidar measurements is presented. Artificially generated lidar signals from two-component inhomogeneous model atmospheres are inverted with the information from two wavelengths (532 and 1064 nm) simul-taneously. The solution for the vertical aerosol extinction profile is formulated with Klett's far-end solution. The boundary, value is expressed in terms of aerosol transmission along the lidar line according to Fernald's solution of the lidar equation. The aerosol transmission is determined iteratively with a transcendental equation on the assumption that a linear relationship exists between the extinction coefficients at both wavelengths. Inversion calculations are applied to model atmospheres with range dependent lidar ratios representing the growth of aerosol particles caused by increasing relative humidity in the planetary boundary layer. For the inversion constant lidar ratios are assumed that vary between 40 and 70 sr. The numerical procedure turns out to be stable enough to provide meaningful results even in cases of misestimated lidar ratios. The application of the method is of less use for misestimated background radiation and low aerosol concentrations. # 1997 Optical Society of America
机译:提出了一种从后向散射激光雷达测量中确定气溶胶消光剖面的边界值的方法。来自两成分不均匀模型大气的人工生成的激光雷达信号与来自两个波长(532和1064 nm)的信息同时被反转。垂直气溶胶消光曲线的解决方案由Klett的远端解决方案制定。边界值根据激光雷达方程的Fernald解以沿激光雷达线的气溶胶传输来表示。在两个波长的消光系数之间存在线性关系的假设下,通过先验方程式反复确定气溶胶透过率。反演计算应用于具有范围依赖的激光雷达比率的模型大气,该比率代表了由于行星边界层中相对湿度增加而引起的气溶胶颗粒的增长。对于反演,假定恒定的激光雷达比在40到70 sr之间变化。数值程序证明足够稳定,即使在估计激光雷达比的情况下也能提供有意义的结果。该方法的应用很少用于错误估计的背景辐射和低浓度的气溶胶。 #1997美国眼镜学会

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