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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Estimates of North American summertime planetary boundary layer depths derived from space-borne lidar
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Estimates of North American summertime planetary boundary layer depths derived from space-borne lidar

机译:星载激光雷达对北美夏季行星边界层深度的估计

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The planetary boundary layer (PBL) mediates exchanges of energy, moisture, momentum, carbon, and pollutants between the surface and the atmosphere. This paper is a first step in producing a space-based estimate of PBL depth that can be used to compare with and evaluate model-based PBL depth retrievals, inform boundary layer studies, and improve understanding of the above processes. In clear sky conditions, space-borne lidar backscatter is frequently affected by atmospheric properties near the PBL top. Spatial patterns of 5-year mean mid-day summertime PBL depths over North America were estimated from the CALIPSO lidar backscatter and are generally consistent with model reanalyses and AMDAR (Aircraft Meteorological DAta Reporting) estimates. The rate of retrieval is greatest over the subtropical oceans (near 100%) where overlying subsidence limits optically thick clouds from growing and attenuating the lidar signal. The general retrieval rate over land is around 50% with decreased rates over the Southwestern United States and regions with high rates of convection. The lidar-based estimates of PBL depth tend to be shallower than aircraft estimates in coastal areas. Compared to reanalysis products, lidar PBL depths are greater over the oceans and areas of the boreal forest and shallower over the arid and semiarid regions of North America.
机译:行星边界层(PBL)介导了表面与大气之间的能量,水分,动量,碳和污染物的交换。本文是产生基于空间的PBL深度估计的第一步,该估计可用于与基于模型的PBL深度检索进行比较和评估,为边界层研究提供信息,并增进对上述过程的理解。在晴朗的天空条件下,星载激光雷达的后向散射经常受到PBL顶部附近的大气特性的影响。根据CALIPSO激光雷达的反向散射估算了北美地区5年平均夏季中旬夏季PBL深度的空间格局,该格局通常与模型再分析和AMDAR(飞机气象DAta报告)估算相符。在亚热带海洋(接近100%)上,回采率最高。在这里,上沉的沉降限制了光学厚云的生长和衰减了激光雷达信号。在美国西南部和对流率较高的地区,陆地上的总体取回率约为50%,而回采率下降。在沿海地区,基于激光雷达的PBL深度估计往往比飞机估计的浅。与再分析产品相比,激光雷达的PBL深度在海洋和北方森林地区更大,而在北美的干旱和半干旱地区则更浅。

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