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Global dust distribution from improved thin dust layer detection using A-train satellite lidar observations

机译:通过使用A列卫星激光雷达观测技术改进的薄尘层探测获得的全球尘埃分布

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摘要

A new dust detection algorithm was developed to take advantage of strong dust signals in the Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observation (CALIPSO) 532 nm perpendicular channel to more accurately identify optically thin dust layer boundaries. Layer mean particulate depolarization ratios and improved thin ice cloud detections by combining CALIPSO and CloudSat products were used to further refine the dust mask. Three year global mean results show that the new method detects dust occurrences (totaldetecteddustcasenumber/totalobservationnumber) of 0.12 and 0.028 below and above 4km altitudes, while CALIPSO Level 2 products reported 0.07 and 0.012, respectively. The improvements are mainly in weak source and transporting regions, and the upper troposphere, where optically thin, but significant dust layers from the point of view of aerosol-cloud interactions are dominated. The results can help us to better understand global dust transportation and dust-cloud interactions and improve model simulations.
机译:开发了一种新的灰尘检测算法,以利用Cloud-Aerosol激光雷达和红外探路者卫星观测(CALIPSO)532 nm垂直通道中的强灰尘信号来更准确地识别光学上薄的灰尘层边界。通过结合CALIPSO和CloudSat产品,使用层平均微粒去极化率和改进的薄冰云检测来进一步完善防尘罩。三年的全球平均结果表明,该新方法检测到在4 km高度以下和更高的高度分别为0.12和0.028的粉尘发生量(总检测到的尘埃盒数/杂物保护数),而CALIPSO 2级产品分别报告为0.07和0.012。改善主要是在较弱的源和输运区域,以及对流层上部,在光学上较薄,但从气溶胶-云相互作用的角度来看,主要是尘埃层。结果可以帮助我们更好地了解全球尘埃运输和尘埃云之间的相互作用,并改善模型模拟。

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