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3-Dimensional observations of atmospheric humidity with a scanning differential absorption lidar

机译:用扫描差分吸收激光雷达对大气湿度进行三维观测

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A novel scanning water vapor differential absorption lidar (DIAL) system has been developed. This instrument is mobile and was applied successfully in two field campaigns: COPS 2007 (Convective and Orographically-induced Precipitation Study), a research and development project of the World Weather Research Programme, and FLUXPAT2009 within the German Research Foundation project patterns in Soil-Vegetation-Atmosphere Systems: monitoring, modeling and data assimilation". In this paper, the instrument is described and its capabilities are illustrated with measurements examples. The DIAL provides remote sensing data of the atmospheric water-vapor field with previously unachieved resolution. The data products of the DIAL are profiles of absolute humidity with typical resolutions of 15 to 300 m with a temporal resolution of 1 to 10 s and a maximum range of several kilometers at both day and night. But spatial and temporal resolution can be traded off against each other. Intercomparisons with other instruments confirm high accuracy. Beside humidity, also the backscatter field and thus aerosols and clouds are observed simultaneously.The DIAL transmitter is based on an injection-seeded Titanium: Sapphire laser operated at 820 nm which is end-pumped with a diode-pumped Nd.YAG laser. By use of a scanning transmitter with an 80-cm receiving telescope, the measurements can be performed in any direction of interest and the 3-dimensional structure of the water vapor field can be observed.
机译:已经开发了一种新颖的扫描水蒸气差分吸收激光雷达(DIAL)系统。该仪器是可移动的,已成功应用于两个野外活动:COPS 2007(对流和地形诱发的降水研究),世界天气研究计划的研究和开发项目,以及德国研究基金会土壤植被项目模式内的FLUXPAT2009 “大气系统:监测,建模和数据同化”。本文介绍了该仪器,并通过测量示例说明了其功能。DIAL提供了以前无法实现的分辨率的大气水蒸气场的遥感数据。这些数据产品DIAL的是绝对湿度曲线,典型分辨率为15到300 m,时间分辨率为1到10 s,白天和黑夜的最大范围为几公里,但是可以在空间和时间分辨率之间进行权衡。与其他仪器的比对结果表明该仪器具有很高的准确性。同时观测到s的气溶胶和云。 DIAL发射器基于在820 nm下工作的注入种子的钛:蓝宝石激光器,并用二极管泵浦的Nd.YAG激光器端泵浦。通过使用带有80厘米接收望远镜的扫描发射器,可以在任何感兴趣的方向上进行测量,并且可以观察到水蒸气场的3维结构。

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