3-dimensional observations of atmospheric variables during the field campaign COPS

3-dimensional observations of atmospheric variables during the field campaign COPS
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COPS 实地活动期间大气变量的 3 维观测

DOI:
10.1088/1755-1315/1/1/012031
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发表时间:
2008
期刊:
IOP Conference Series: Earth and Environmental Science
影响因子:
--
通讯作者:
V. Wulfmeyer
V. Wulfmeyer
中科院分区:
--
文献类型:
--
作者:
A. Behrendt;H. Bauer;M. Radlach;A. Riede;M. Schiller;G. Wagner;V. Wulfmeyer

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对流和地形诱导降水研究(COPS)的目的是提高复杂地形中地形诱导降水的预报质量。COPS是世界天气研究计划的一个研究和发展项目,被认为是迄今为止进行的最大的定量降水预报实地活动之一。在为期三个月的实地考察阶段(2007年6月至8月),在德国西南部/法国东部,将最先进的主动和被动遥感系统网络与总共10个机载平台、气象卫星快速扫描和标准气象仪器密集网络相结合,以观测三维空间和时间上的大气变量。霍恩海姆大学部署了两个新的地面移动的扫描激光雷达系统:一个是扫描旋转拉曼激光雷达,它提供大气温度场和气溶胶光学特性的综合测量,另一个是水蒸气差分吸收激光雷达。在COPS期间,两个激光雷达系统都位于Hornisgrinde,这是北方黑森林的最高峰,还有一套其他的遥感系统。在这方面的贡献,我们提出并讨论这些测量的亮点。
The Convective and Orographically-induced Precipitation Study (COPS) has the aim to advance the quality of forecasts of orographically-induced precipitation in complex terrain. COPS is a Research and Development Project of the World Weather Research Program and considered to be one of the largest field campaigns on quantitative precipitation forecasting that has been performed so far. A network of state-of-the-art active and passive remote sensing systems was combined with in total 10 airborne platforms, Meteosat rapid scans and dense networks of standard meteorological instruments during the three months long field phase (June-August, 2007) in south-western Germany/eastern France to observe atmospheric variables in the three spatial dimensions and in time. By the University of Hohenheim, two novel ground-based mobile scanning lidar systems were deployed: a scanning rotational Raman lidar which provides combined measurements of the field of atmospheric temperature and aerosol optical properties, and a water-vapour differential absorption lidar (DIAL). During COPS, both lidar systems were located at Hornisgrinde, the highest peak of the northern Black Forest together with a large suite of other remote sensing systems. In this contribution we present and discuss highlights of these measurements.
卫星水蒸气激光雷达测量模拟:真实大气条件下的性能评估。
DOI: 10.1016/j.rse.2007.08.008
发表时间: 2008
影响因子: 13.5
作者:
P. Girolamo;A. Behrendt;C. Kiemle;V. Wulfmeyer;H. Bauer;D. Summa;A. Dörnbrack;G. Ehret
通讯作者: G. Ehret