Retrieval of the vertical evolution of the cloud effective radius from the Chinese FY-4 (Feng Yun 4) next-generation geostationary satellites
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Published:2020-01-30
Issue:2
Volume:20
Page:1131-1145
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ISSN:1680-7324
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Container-title:Atmospheric Chemistry and Physics
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language:en
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Short-container-title:Atmos. Chem. Phys.
Author:
Chen YilunORCID, Chen GuangcanORCID, Cui Chunguang, Zhang Aoqi, Wan Rong, Zhou Shengnan, Wang Dongyong, Fu Yunfei
Abstract
Abstract. The vertical evolution of the cloud effective radius
(Re) reflects the precipitation-forming process. Based on observations
from the first Chinese next-generation geostationary meteorological
satellites (FY-4A, Feng Yun 4), we established a new method for objectively obtaining
the vertical temperature vs. Re profile. First of all, Re was
calculated using a bispectral lookup table. Then, cloud clusters were
objectively identified using the maximum temperature gradient method.
Finally, the Re profile in a certain cloud was then obtained by
combining these two sets of data. Compared with the conventional method used
to obtain the Re profile from the subjective division of a region,
objective cloud-cluster identification establishes a unified standard,
increases the credibility of the Re profile, and facilitates the
comparison of different Re profiles. To investigate its performance, we
selected a heavy precipitation event from the Integrative Monsoon Frontal
Rainfall Experiment in summer 2018. The results showed that the method
successfully identified and tracked the cloud cluster. The Re profile
showed completely different morphologies in different life stages of the
cloud cluster, which is important in the characterization of the formation
of precipitation and the temporal evolution of microphysical processes.
Funder
National Natural Science Foundation of China
Publisher
Copernicus GmbH
Subject
Atmospheric Science
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