Arctic Mixed Phase Clouds Macro And Microphysical Insights With A Numerical Model


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Arctic mixed-phase clouds : Macro- and microphysical insights with a numerical model


Arctic mixed-phase clouds : Macro- and microphysical insights with a numerical model

Author: Loewe, Katharina

language: en

Publisher: KIT Scientific Publishing

Release Date: 2017-09-15


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This work provides new insights into macro- and microphysical properties of Arctic mixed-phase clouds: first, by comparing semi-idealized large eddy simulations with observations; second, by dissecting the influences of different surface types and boundary layer structures on Arctic mixed- phase clouds; third, by elucidating the dissipation process; and finally by analyzing the main microphysical processes inside Arctic mixed-phase clouds.

Arctic Mixed-phase Clouds


Arctic Mixed-phase Clouds

Author: Katharina Loewe

language: en

Publisher:

Release Date: 2020-10-09


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This work provides new insights into macro- and microphysical properties of Arctic mixed-phase clouds: first, by comparing semi-idealized large eddy simulations with observations; second, by dissecting the influences of different surface types and boundary layer structures on Arctic mixed- phase clouds; third, by elucidating the dissipation process; and finally by analyzing the main microphysical processes inside Arctic mixed-phase clouds. This work was published by Saint Philip Street Press pursuant to a Creative Commons license permitting commercial use. All rights not granted by the work's license are retained by the author or authors.

Assessing the Aerosol Impact on Southern West African Clouds and Atmospheric Dynamics


Assessing the Aerosol Impact on Southern West African Clouds and Atmospheric Dynamics

Author: Deetz, Konrad

language: en

Publisher: KIT Scientific Publishing

Release Date: 2018-01-30


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By using COSMO-ART, highly resolved process study simulations for 2-3 July 2016 are conducted to assess the aerosol effect on the meteorological conditions of southern West Africa. The meteorological phenomenon Evening Monsoon Flow Enhancement (EMFE) is identified as highly susceptible to the aerosol direct effect, leading to a spatial shift of the EMFE front. In a second aerosol feedback chain the aerosol variation leads to a temporal shift of the stratus-to-cumulus transition.