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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Lidar remote sensing of cloud formation caused by low-level jets
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Lidar remote sensing of cloud formation caused by low-level jets

机译:激光雷达对低空急流造成的云形成的遥感

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摘要

In May 2014, the East Hampton Roads Aerosol Flux campaign was conducted at Hampton University to examine small-scale aerosol transport using aerosol, Raman, and Doppler lidars and rawindsonde launches. We present the results of analyses performed on these high-resolution planetary boundary layer and lower atmospheric measurements, with a focus on the low-level jets (LLJs) that form in this region during spring and summer. We present a detailed case study of a LLJ lasting from evening of 20 May to morning of 21 May using vertical profiles of aerosol backscatter, wind speed and direction, water vapor mixing ratio, temperature, and turbulence structure.We show with higher resolution than in previous studies that enhanced nighttime turbulence triggered by LLJs can cause the aerosol and water vapor content of the boundary layer to be transported vertically and form a well-mixed region containing the cloud condensation nuclei that are necessary for cloud formation.
机译:2014年5月,汉普顿大学开展了East Hampton Roads气溶胶通量运动,研究了使用气溶胶,拉曼,多普勒激光雷达和rawindsonde发射的小规模气溶胶运输。我们介绍了对这些高分辨率行星边界层和较低大气测量值进行的分析结果,重点是在春季和夏季在该区域形成的低空急流(LLJ)。我们使用气溶胶反向散射,风速和风向,水汽混合比,温度和湍流结构的垂直剖面,对从5月20日晚上持续到5月21日早晨的低空急流进行了详细的案例研究,显示的分辨率高于先前的研究表明,由低空急流引起的夜间湍流增强会导致边界层的气溶胶和水蒸气含量垂直传输,并形成一个包含云凝结核的良好混合区域,这是云形成所必需的。

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