【学术报告】Prof. Meinrat O. Andreae


发布时间:2019-04-28浏览次数:2138


题目: Aerosol-Cloud-Precipitation Interactions in the Climate System

报告人: Prof. Dr.Meinrat O. Andreae

(University of California San Diego/Max Plank Institute for Chemistry)

邀请人: 丁爱军 教授

时间: 2019年4月29日(周一)下午3:30

地点: 大气科学楼D103室

摘要: Aerosols serve as cloud condensation nuclei (CCN) and ice nuclei (IN) and thus have a powerful effect on cloud properties. Increased aerosol concentrations resulting from pollution lead to higher cloud droplet concentrations, but smaller droplet sizes. This in turn affects the physical processes inside clouds that lead to the initiation of precipitation. Depending on a number of factors, including aerosol composition, atmospheric stability, and cloud water content, increasing CCN concentrations may either decrease or increase rainfall. In convective clouds, early rain formation is suppressed, which makes more water and energy available to rise higher in the atmosphere and form ice particles. This may invigorate the dynamics of convection, encourage the formation of hail and lightning, and enhance the transport of materials to the upper troposphere. In turn, cloud processing also affects the concentrations, composition, and distribution of atmospheric aerosols. In order to understand and quantify the effects of air pollution on climate, and precipitation in particular, knowledge of natural abundance and characteristics of aerosols is as essential as the observation of perturbed conditions. I will present recent advances in the conceptual understanding of aerosol-cloud-precipitation interactions, with emphasis on the role of convective clouds on the aerosol life cycle.
欢迎老师同学踊跃参加!
                                                                  


  • bwin必赢仙林校区大气科学楼
    江苏省南京市栖霞区仙林大道163号
    210023