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Lidar-based remote sensing of atmospheric boundary layer height over land and ocean

机译:基于激光雷达的陆地和海洋大气边界层高度遥感

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摘要

Atmospheric boundary layer (ABL) processes are important in climate, weather and air quality. A better understanding of the structure and the behavior of the ABL is required for understanding and modeling of the chemistry and dynamics of the atmosphere on all scales. Based on the systematic variations of the ABL structures over different surfaces, different lidar-based methods were developed and evaluated to determine the boundary layer height and mixing layer height over land and ocean. With Atmospheric Radiation Measurement Program (ARM) Climate Research Facility (ACRF) micropulse lidar (MPL) and radiosonde measurements, diurnal and season cycles of atmospheric boundary layer depth and the ABL vertical structure over ocean and land are analyzed. The new methods are then applied to satellite lidar measurements. The aerosol-derived global marine boundary layer heights are evaluated with marine ABL stratiform cloud top heights and results show a good agreement between them.
机译:大气边界层(ABL)过程对气候,天气和空气质量至关重要。需要更好地了解ABL的结构和行为,才能理解和模拟各种规模的大气化学和动力学。基于不同表面上ABL结构的系统变化,开发并评估了基于激光雷达的不同方法,以确定陆地和海洋的边界层高度和混合层高度。利用大气辐射测量计划(ARM)气候研究设施(ACRF)微脉冲激光雷达(MPL)和无线电探空仪测量,分析了海洋和陆地上的大气边界层深度和ABL垂直结构的昼夜和季节周期。然后将新方法应用于卫星激光雷达测量。气溶胶衍生的全球海洋边界层高度用海洋ABL层状云顶高度进行了评估,结果表明它们之间有很好的一致性。

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