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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Simulation of satellite water vapour lidar measurements: Performance assessment under real atmospheric conditions
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Simulation of satellite water vapour lidar measurements: Performance assessment under real atmospheric conditions

机译:卫星水蒸气激光雷达测量的模拟:真实大气条件下的性能评估

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A lidar simulator has been applied to assess the performances of a satellite water vapour differential absorption lidar (DIAL) system. Measurements performed by the airborne Deutsches Zentrum fur Luft-and Raumfahrt (DLR) water vapour DIAL on 15 May 2002 during ESA's Water Vapour Lidar Experiment (WALEX), in combination with PSU/NCAR Mesoscale Model (MM5) output, were used to obtain backscatter and water vapour fields with high resolution and accuracy. These data and model output serve as input for the simulator, allowing for the performance of satellite DIAL under highly-inhomogeneous atmospheric conditions including clouds to be assessed. The airborne measurements show an intrusion of stratospheric air into the troposphere, and MM5 data used above the DLR Falcon airplane flight altitude are characterized by very high upper tropospheric humidity levels, comparable to those associated with strong mid-latitude transport events from the troposphere to the lowermost stratosphere. Results of the simulator reveal that the maximum systematic error does not exceed 5% up to 16 km, except in the presence of thick cirrus and mid level clouds with an optical thickness up to 2 and, occasionally, inside the dry stratospheric intrusion, while the random error is less than 20% up to 16 km when spatial measurement resolutions are applied that follow the World Meteorological Organization (WMO) threshold observational requirements for numerical weather prediction (NWP). The bias is even smaller if a drier upper troposphere/lower stratosphere (UTLS) region from a reference atmosphere is considered. The results confirm the capability of satellite water vapour DIAL systems to retrieve thin structures of the tropospheric water vapour and particle backscatter fields, as well as its capability to provide low bias and random error measurements even in the presence of clouds. (C) 2007 Elsevier Inc. All rights reserved.
机译:激光雷达模拟器已用于评估卫星水汽差分吸收激光雷达(DIAL)系统的性能。在2002年5月15日,在ESA的水蒸气激光雷达实验(WALEX)期间,由机载德国Deutscher Zentrum皮草的Luft-and Raumfahrt(DLR)水蒸气DIAL与PSU / NCAR中尺度模型(MM5)输出结合进行了测量和水汽领域具有高分辨率和准确性。这些数据和模型输出用作模拟器的输入,从而允许在高度不均匀的大气条件下(包括待评估的云)评估卫星DIAL的性能。机载测量表明平流层空气侵入对流层,在DLR Falcon飞机飞行高度以上使用的MM5数据具有很高的对流层上部湿度水平,这与从对流层到中纬度的强中空运输事件相关。最下层的平流层。模拟器的结果表明,在不超过16 km的情况下,最大系统误差不超过5%,除非存在厚的卷云和光学厚度高达2的中层云,并且偶尔在干平流层侵入内部,而当遵循世界气象组织(WMO)数值天气预报(NWP)的阈值观测要求应用空间测量分辨率时,在16 km处,随机误差小于20%。如果考虑到来自参考大气的较干燥的对流层/低平流层(UTLS)区域,则偏差甚至更小。结果证实了卫星水蒸气DIAL系统具有检索对流层水蒸气和粒子反向散射场的薄结构的能力,以及即使在有云的情况下也能提供低偏差和随机误差测量的能力。 (C)2007 Elsevier Inc.保留所有权利。

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