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Constraints on interactions between aerosols and clouds on a global scale from a combination of MODIS-CERES satellite data and climate simulations

机译:结合MODIS-CERES卫星数据和气候模拟,在全球范围内限制气溶胶和云之间的相互作用

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Satellite-based cloud top effective radius retrieved by the CERES Science Team were combined with simulated aerosol concentrations from CCCma CanAM4 to examine relationships between aerosol and cloud that underlie the first aerosol indirect (cloud albedo) effect. Evidence of a strong negative relationship between sulphate, and organic aerosols, with cloud top effective radius was found for low clouds, indicating both aerosol types are contributing to the first indirect effect on a global scale. Furthermore, effects of aerosol on the cloud droplet effective radius are more pronounced for larger cloud liquid water paths. While CanAM4 broadly reproduces the observed relationship between sulphate aerosols and cloud droplets, it does not reproduce the dependency of cloud top droplet size on organic aerosol concentrations nor the dependency on cloud liquid water path. Simulations with a modified version of the model yield a more realistic dependency of cloud droplets on organic carbon. The robustness of the methods used in the study are investigated by repeating the analysis using aerosol simulated by the GOCART model and cloud top effective radii derived from the MODIS Science Team.
机译:CERES科学团队获取的基于卫星的云顶有效半径与CCCma CanAM4的模拟气溶胶浓度相结合,以检查气溶胶与云之间的关系,这是第一个气溶胶间接(云反照率)效应的基础。对于低云层,发现硫酸盐和有机气溶胶之间具有很强的负相关关系,且云顶有效半径为负,表明这两种气溶胶类型都在全球范围内首次造成了间接影响。此外,对于较大的云液态水路径,气溶胶对云滴有效半径的影响更加明显。尽管CanAM4广泛地再现了观察到的硫酸盐气溶胶与云滴之间的关系,但它没有再现云顶液滴尺寸对有机气溶胶浓度的依赖性,也不对云液水路径的依赖性。使用该模型的修改版本进行的模拟产生了更真实的云滴对有机碳的依赖性。通过使用GOCART模型模拟的气溶胶和来自MODIS科学团队的云顶有效半径重复进行分析,研究了本研究中方法的鲁棒性。

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