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Error analysis of Raman differential absorption lidar ozone measurements in ice clouds

机译:冰云中拉曼差分吸收激光雷达臭氧测量的误差分析

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摘要

A formalism for the error treatment of lidar ozone measurements with the Raman differential absorption lidar technique is presented. In the presence of clouds wavelength-dependent multiple scattering and cloud-particle extinction are the main sources of systematic errors in ozone measurements and necessitate a correction of the measured ozone profiles. Model calculations are performed to describe the influence of cirrus and polar stratospheric clouds on the ozone. It is found that it is sufficient to account for cloud-particle scattering and Rayleigh scattering in and above the cloud; boundary-layer aerosols and the atmospheric column below the cloud can be neglected for the ozone correction. Furthermore, if the extinction coefficient of the cloud is approx.>0.1 km~(-1), the effect in the cloud is proportional to the effective particle extinction and to a particle correction function determined in the limit of negligible molecular scattering. The particle correction function depends on the scattering behavior of the cloud particles, the cloud geometric structure, and the lidar system parameters. Because of the differential extinction of light that has undergone one or more small-angle scattering processes within the cloud, the cloud effect on ozone extends to altitudes above the cloud. The various influencing parameters imply that the particle-related ozone correction has to be calculated for each individual measurement. Examples of ozone measurements in cirrus clouds are discussed.
机译:提出了用拉曼差分吸收激光雷达技术对激光雷达臭氧测量结果进行误差处理的形式化方法。在存在云的情况下,与波长有关的多重散射和云颗粒消光是臭氧测量中系统误差的主要来源,因此有必要校正所测量的臭氧分布。进行模型计算以描述卷云和极地平流层云对臭氧的影响。发现足以解决云中和云中上方的云粒子散射和瑞利散射;可以忽略边界层气溶胶和云层下方的大气柱来进行臭氧校正。此外,如果云的消光系数约为> 0.1 km〜(-1),则云中的影响与有效的粒子消光和在可忽略的分子散射范围内确定的粒子校正函数成正比。粒子校正函数取决于云粒子的散射行为,云几何结构和激光雷达系统参数。由于在云中经历了一个或多个小角度散射过程的光的差异消光,云对臭氧的影响扩展到云上方的高度。各种影响参数意味着必须为每个单独的测量计算与颗粒有关的臭氧校正量。讨论了卷云中臭氧测量的示例。

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