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Seasonal Predictability of Cloud Droplet Number ConcentrationAerosol emissions modify the properties of clouds hence impacting climate. The aerosol indirect effect may have offset part of the global warming caused by anthropogenic greenhouse gas emissions during the industrial era. It however remains unclear whether the same effect is significant over time scales relevant for seasonal and weather climate prediction. Answering such a question has been difficult since most weather prediction systems lack a proper representation of the aerosol evolution and transport and their interaction with clouds. Even in advanced systems it is not clear to what extent cloud microphysical properties are predictable over subseasonal to seasonal time scales. Such an issue is addressed in this study. We use a set of 30 year, four ensemble member, 9 month lead hindcast simulations of the NASA GEOS seasonal prediction system (GEOS-S2S) to study the predictability of cloud droplet number concentration in warm stratocumulus clouds. The latest version GEOS-S2S system implements interactive aerosol as well as a two moment cloud microphysics scheme therefore it is suitable for studying the aerosol indirect effect on climate. Long term retrievals from the MODIS (Moderate Resolution Imaging Spectroradiometer) are used to validate the model predictions and assess its skill in predicting cloud droplet number concentration.
Document ID
20180008766
Acquisition Source
Goddard Space Flight Center
Document Type
Presentation
Authors
Barahona, Donifan
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Molod, Andrea
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Borovikov, Anna
(Science Systems and Applications, Inc. Lanham, MD, United States)
Date Acquired
December 26, 2018
Publication Date
December 10, 2018
Subject Category
Meteorology And Climatology
Report/Patent Number
GSFC-E-DAA-TN64182
Meeting Information
Meeting: American Geophysical Union Fall Meeting (AGU 2018)
Location: Washington, DC
Country: United States
Start Date: December 10, 2018
End Date: December 14, 2018
Sponsors: American Geophysical Union (AGU)
Funding Number(s)
CONTRACT_GRANT: NNG17HP01C
Distribution Limits
Public
Copyright
Public Use Permitted.
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