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Non-Monotonic Aerosol Effect on Precipitation in Convective Clouds over Tropical Oceans

机译:非单调气溶胶对热带海洋对流云降水的影响

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摘要

Aerosol effects on convective clouds and associated precipitation constitute an important open-ended question in climate research. Previous studies have linked an increase in aerosol concentration to a delay in the onset of rain, invigorated clouds and stronger rain rates. Here, using observational data, we show that the aerosol effect on convective clouds shifts from invigoration to suppression with increasing aerosol optical depth. We explain this shift in trend (using a cloud model) as the result of a competition between two types of microphysical processes: cloud-core-based invigorating processes vs. peripheral suppressive processes. We show that the aerosol optical depth value that marks the shift between invigoration and suppression depends on the environmental thermodynamic conditions. These findings can aid in better parameterizing aerosol effects in climate models for the prediction of climate trends.
机译:气溶胶对对流云和相关降水的影响是气候研究中一个重要的开放性问题。先前的研究已将气溶胶浓度的增加与降雨的延迟,云层的活跃和降雨率的提高联系在一起。在这里,使用观测数据,我们发现对流云的气溶胶效应会随着气溶胶光学深度的增加而从激发转变为抑制。我们解释了这种趋势的变化(使用云模型),这是两种微物理过程之间竞争的结果:基于云核心的激励过程与外围抑制过程。我们表明,标记激发和抑制之间转变的气溶胶光学深度值取决于环境热力学条件。这些发现有助于更好地参数化气候模型中的气溶胶效应,以预测气候趋势。

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