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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Observed Covariations of Aerosol Optical Depth and Cloud Cover in Extratropical Cyclones
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Observed Covariations of Aerosol Optical Depth and Cloud Cover in Extratropical Cyclones

机译:观察到气溶胶光学深度和云覆盖在潜在旋风中的共变量

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摘要

Using NASA Moderate Resolution Imaging Spectroradiometer aerosol optical depth and total cloud cover retrievals, CloudSat-CALIPSO cloud profiles, and a database of extratropical cyclones and frontal boundary locations, relationships between changes in aerosol optical depth and cloud cover in extratropical cyclones occurring over Northern Hemisphere oceans are examined. A reanalysis data set is used to constrain column water vapor and ascent strength in the cyclones in an attempt to distinguish their impact on cloud cover from the effect of changes in aerosol loading. The results suggest that high aerosol optical depth cyclones exhibit larger middle- and high-level cloud cover than their low aerosol optical depth counterparts. However, the opposite behavior is found for low-level cloud cover. These relationships are found to depend on the large-scale environment, in particular the column water vapor and vertical motion. Despite the inability of the observations to provide a causal physical link between aerosol load and cloud cover, these results can help to constrain and evaluate model simulations.
机译:使用NASA中等分辨率成像光谱探头计气溶胶光学深度和总云盖检索,Cloudsat-Calipso云概况,以及北半球海洋海洋海洋北半球海洋海洋海洋海洋海洋海洋海洋近海飓风中的气雾光学深度和云覆盖之间的关系的关系检查。重新分析数据集用于限制旋风中的柱水蒸气和上升力,试图区分它们对气溶胶载荷变化的影响。结果表明,高气溶胶光学深度旋风分离器比其低气溶胶光学深度对应物呈现出较大的中高型云盖。但是,找到了对低级云覆盖的相反行为。发现这些关系依赖于大规模环境,特别是柱水蒸气和垂直运动。尽管观察结果无法在气溶胶载荷和云覆盖之间提供因果关系,但这些结果可以有助于约束和评估模拟模拟。

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