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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Global view of aerosol vertical distributions from CALIPSO lidar measurements and GOCART simulations: Regional and seasonal variations
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Global view of aerosol vertical distributions from CALIPSO lidar measurements and GOCART simulations: Regional and seasonal variations

机译:通过CALIPSO激光雷达测量和GOCART模拟获得的气溶胶垂直分布的全局视图:区域和季节变化

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This study examines seasonal variations of the vertical distribution of aerosols through a statistical analysis of the Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observations (CALIPSO) lidar observations from June 2006 to November 2007. A data-screening scheme is developed to attain good quality data in cloud-free conditions, and the polarization measurement is used to separate dust from non-dust aerosol. The CALIPSO aerosol observations are compared with aerosol simulations from the Goddard Chemistry Aerosol Radiation Transport (GOCART) model and aerosol optical depth (AOD) measurements from the MODerate resolution Imaging Spectroradiometer (MODIS). The CALIPSO observations of geographical patterns and seasonal variations of AOD are generally consistent with GOCART simulations and MODIS retrievals especially near source regions, while the magnitude of AOD shows large discrepancies in most regions. Both the CALIPSO observation and GOCART model show that the aerosol extinction scale heights in major dust and smoke source regions are generally higher than that in industrial pollution source regions. The CALIPSO aerosol lidar ratio also generally agrees with GOCART model within 30% on regional scales. Major differences between satellite observations and GOCART model are identified, including (1) an underestimate of aerosol extinction by GOCART over the Indian sub-continent, (2) much larger aerosol extinction calculated by GOCART than observed by CALIPSO in dust source regions, (3) much weaker in magnitude and more concentrated aerosol in the lower atmosphere in CALIPSO observation than GOCART model over transported areas in midlatitudes, and (4) consistently lower aerosol scale height by CALIPSO observation than GOCART model. Possible factors contributing to these differences are discussed.
机译:这项研究通过对2006年6月至2007年11月的云气溶胶激光雷达和红外探路者卫星观测(CALIPSO)激光雷达观测数据进行统计分析,研究了气溶胶垂直分布的季节性变化。开发了一种数据筛选方案以获取高质量的数据在无云的条件下,偏振测量用于将灰尘与非灰尘气溶胶分离。将CALIPSO气溶胶观测结果与Goddard化学气溶胶辐射传输(GOCART)模型中的气溶胶模拟以及MODerate分辨率成像光谱仪(MODIS)中的气溶胶光学深度(AOD)测量结果进行了比较。 CALIPSO观测到的AOD的地理格局和季节性变化通常与GOCART模拟和MODIS取回一致,尤其是在源区附近,而AOD的幅度在大多数地区都显示出很大差异。 CALIPSO观测和GOCART模型均表明,主要尘埃和烟雾源区域的气溶胶消光尺度高度通常高于工业污染源区域的气溶胶绝灭尺度高度。 CALIPSO气溶胶激光雷达的比例在区域范围内通常也与GOCART模型吻合在30%以内。确定了卫星观测与GOCART模型之间的主要差异,包括(1)GOCART在印度次大陆上的气溶胶消灭低估了;(2)GOCART计算得出的气溶胶消灭比CALIPSO在尘埃源地区观察到的大得多,(3 )在中纬度地区的运输区域中,相比GOCART模型,在CALIPSO观测中,低层大气的气溶胶强度和浓度更弱,并且(4)通过CALIPSO观测,其气溶胶尺度高度始终低于GOCART模型。讨论了造成这些差异的可能因素。

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