首页> 外文OA文献 >The Water Vapour Intercomparison Effort in the Framework\ud of the Convective and Orographically-Induced Precipitation\ud Study: Airborne-to-Ground-based and airborne-to-airborne\ud Lidar Systems
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The Water Vapour Intercomparison Effort in the Framework\ud of the Convective and Orographically-Induced Precipitation\ud Study: Airborne-to-Ground-based and airborne-to-airborne\ud Lidar Systems

机译:框架中的水蒸气比对工作\ ud 对流和地形诱发的降水\ ud 研究:空对地和空对空\ ud 激光雷达系统

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摘要

An intensive water vapour intercomparison effort, involving airborne and ground-based water vapour lidar systems, was carried out in the framework of the COPS experiment. The main objective of this paper is to provide accurate error estimates for these systems.\udComparisons between the ground-based Raman lidar BASIL and the airborne CNRS DIAL indicate a mean relative bias between the two sensors, calculated with respect to the mean\udvalue of -2.13% (-0.034 g/kg) in the altitude region 0.5�3.5 km, while comparisons between BASIL and the airborne DLR DIAL lead to a mean relative bias of 1.87% (0.018 g/kg) in this same altitude region.\udComparisons between the ground-based UHOH DIAL and the CNRS DIAL indicate a bias of -\ud3.2% (-0.37x1022 m-3) in the altitude range 1.5-4.5 km, while comparisons between the UHOH DIAL and the DLR DIAL indicate a bias of 0.83% (0.06x1022 m-3) in this same\udaltitude range. Based on the available comparisons between the ground-based Raman lidar BERTHA and the CNRS DIAL, the mean relative bias is found to be -4.37% (-0.123g/kg) in\udthe altitude region 0.5�4.5 km. Comparisons between the ground-based IGN Raman lidar and the CNRS DIAL indicate a bias of 3.18% (0.55 g/kg) in the altitude range from 0.5-4.5 km, while comparisons between the CNRS DIAL and DLR DIAL result in a mean relative bias of 3.93% (1.1x1022 m-3) in the altitude interval 0.5-4.0 km. Based on the available statistics of comparisons, benefiting from the fact that the CNRS DIAL was able to be compared with all other lidar systems, and putting equal weight to the data reliability of each instrument, overall relative values for BASIL, BERTHA, IGN Raman lidar, UHOH DIAL, DLR DIAL, and CNRS DIAL, with respect to the mean value, are found to be -0.38, -2.60, 4.90, -1,43, -2.23 and 1,72%, respectively.
机译:在COPS实验的框架内,进行了深入的水蒸气比对工作,涉及机载和地面水蒸气激光雷达系统。本文的主要目的是为这些系统提供准确的误差估计。\ ud地面拉曼激光雷达BASIL与机载CNRS DIAL的比较表明,相对于的平均值\ udvalue计算得出的两个传感器之间的平均相对偏差。 -2.13%(-0.034 g / kg)在海拔0.5?3.5 km,而BASIL和机载DLR DIAL之间的比较导致在此平均相对偏差为1.87%(0.018 g / kg) \ ud地面UHOH DIAL与CNRS DIAL之间的比较表明,在1.5-4.5 km的海拔范围内,-Uud3.2%(-0.37x1022 m-3)的偏差,而UHOH DIAL之间的比较和DLR DIAL表示在相同\ udtitude范围内的偏差为0.83%(0.06x1022 m-3)。根据基于地面的拉曼激光雷达BERTHA和CNRS DIAL之间的可用比较,发现平均相对偏差为-4.37%(-0.123g / kg)在海拔高度为0.5°4.5 km的地方。地面IGN拉曼激光雷达和CNRS DIAL的比较表明,在0.5-4.5 km的海拔范围内,偏差为3.18%(0.55 g / kg),而CNRS DIAL和DLR DIAL的比较结果为平均相对偏差在0.5-4.0 km的高度区间中,其误差为3.93%(1.1x1022 m-3)。基于比较的可用统计数据,得益于CNRS DIAL能够与所有其他激光雷达系统进行比较的事实,并且对每台仪器的数据可靠性,BASIL,BERTHA,IGN拉曼激光雷达的总体相对值给予了同等重视,相对于平均值,UHOH DIAL,DLR DIAL和CNRS DIAL分别为-0.38%,-2.60%,4.90%,-1.43%,-2.23%和1.72%。

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