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Regional Variability in Convection and Rain Retrievals from the TRMM Microwave Imager (TMI)Precipitation Radar (PR) on board the TRMM satellite shows that the average height of 30 dBz in convective rain areas of the tropics varies significantly from one region to the other. When the convection is weak this height is shallow and when convection is strong this height extends deeper into the troposphere. The brightness temperature (Tb) measured by the microwave radiometer by itself does not reflect this nature of convection satisfactorily. Radiative transfer simulations of Tbs reveal that this could be due to the variations in the vertical distribution of optically active water and ice hydrometeors and their density, shape, and size. These variations are not coupled uniquely to the strength of the convective updrafts, and as a result the Tbs do not reflect properly the convective strength indicated by PR. Because of this deficiency in the Tbs the rain rate deduced from them differs from that of PR. For this reason, to improve the estimation of rain rate we have developed an empirical method. In this method a parameter based on the areal extent of the Tbs that exceed a certain magnitude is included along with the Tbs. Rain rate deduced with this approach is better correlated with that of PR when compared to the current Version 5 operational algorithm. The percentage of rain volume as a function of rain rate, for a given region of 5deg lat. X 5deg long. over a period of three months, deduced from this method, is also in better agreement with that of the PR.
Document ID
20040012980
Acquisition Source
Goddard Space Flight Center
Document Type
Conference Paper
Authors
Prabhakara, C.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Iacovazzi, R., Jr.
(Science Systems and Applications, Inc. Lanham, MD, United States)
Date Acquired
August 21, 2013
Publication Date
January 1, 2003
Subject Category
Meteorology And Climatology
Meeting Information
Meeting: International Conference of Geographic Information Systems and Remote Sensing in Hydrology, Water Resources and Environment
Location: Yichang City
Country: China
Start Date: September 16, 2003
End Date: September 19, 2003
Distribution Limits
Public
Copyright
Other

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