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首页> 外文期刊>Journal of Applied Meteorology and Climatology >Observations of Atmospheric Structure and Dynamics in the Owens Valley of California with a Ground-Based, Eye-Safe, Scanning Aerosol Lidar
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Observations of Atmospheric Structure and Dynamics in the Owens Valley of California with a Ground-Based, Eye-Safe, Scanning Aerosol Lidar

机译:地面,对人眼安全的扫描式气溶胶激光雷达对加利福尼亚州欧文斯山谷大气结构和动力学的观测

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摘要

First results are presented from the deployment of the NCAR Raman-Shifted Eye-Safe Aerosol Lidar (REAL) in the Owens Valley of California during the Terrain-Induced Rotor Experiment (T-REX) in March and April 2006. REAL operated in range-height indicator (RHI) and plan position indicator (PPI) scanning modes to observe the vertical and horizontal structures of the aerosol and cloud distribution in a broad valley in the lee of a tall mountain range. The scans produce two-dimensional cross sections that when animated produce time-lapse visualizations of the microscale and mesoscale atmospheric structures and dynamics. The 2-month dataset includes a wide variety of interesting atmospheric phenomena. When the synoptic-scale flow is strong and westerly,the lidar data reveal mountain-induced waves, hydraulic jumps, and rotorlike circulations that lift aerosols to altitudes of more than 2 km above the valley. Shear instabilities occasionally leading to breaking waves were observed in cloud and aerosol layers under high wind conditions. In quiescent conditions, the data show multiple aerosol layers, upslope flows, and drainage flows interacting with valley flows. The results demonstrate that a rapidly scanning, eye-safe, ground-based aerosol lidar can beused to observe important features of clear-air atmospheric flows and can contribute to an improved understanding of mountain-induced meteorological phenomena. The research community is encouraged to use the dataset in support of their observational analysis and modeling efforts.
机译:在2006年3月和4月进行的地形感应转子实验(T-REX)期间,在加利福尼亚州欧文斯山谷部署了NCAR拉曼移眼安全气溶胶激光雷达(REAL),得出了初步结果。高度指示器(RHI)和平面位置指示器(PPI)扫描模式,以观察高山区背风宽阔山谷中气溶胶和云分布的垂直和水平结构。扫描产生二维横截面,当对其进行动画处理时,将产生微观和中尺度大气结构和动力学的延时可视化图像。为期2个月的数据集包括各种有趣的大气现象。当天气尺度的气流强而西风时,激光雷达数据揭示了山诱发的波浪,水力跃迁和类似转子的环流,这些气溶胶将气溶胶提升至山谷上方2 km以上的高度。在大风条件下,在云层和气溶胶层中观察到有时会导致波浪破裂的剪切不稳定性。在静止状态下,数据显示多个气溶胶层,上坡流以及排水流与谷流相互作用。结果表明,可以使用快速扫描,对眼睛安全的地面气溶胶激光雷达来观察晴空空气流动的重要特征,并且可以帮助人们更好地了解山地引起的气象现象。鼓励研究界使用数据集来支持他们的观察分析和建模工作。

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