Reduction of Non-uniform Beam Filling Effects by Vertical Decorrelation : Theory and Simulations
- Author:
- Iguchi, Toshio
- Published:
- February 26, 2013.
- Physical Description:
- 1 electronic document
- Additional Creators:
- Nakagawa, Katsuhiro and Short, David
Online Version
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- Unclassified, Unlimited, Publicly available.
Free-to-read Unrestricted online access - Summary:
- Algorithms for estimating precipitation rates from spaceborne radar observations of apparent radar reflectivity depend on attenuation correction procedures. The algorithm suite for the Ku-band precipitation radar aboard the Tropical Rainfall Measuring Mission satellite is one such example. The well-known problem of nonuniform beam filling is a source of error in the estimates, especially in regions where intense deep convection occurs. The error is caused by unresolved horizontal variability in precipitation characteristics such as specific attenuation, rain rate, and effective reflectivity factor. This paper proposes the use of vertical decorrelation for correcting the nonuniform beam filling error developed under the assumption of a perfect vertical correlation. Empirical tests conducted using ground-based radar observations in the current simulation study show that decorrelation effects are evident in tilted convective cells. However, the problem of obtaining reasonable estimates of a governing parameter from the satellite data remains unresolved.
- Other Subject(s):
- Collection:
- NASA Technical Reports Server (NTRS) Collection.
- Note:
- Document ID: 20150000267.
GSFC-E-DAA-TN8535.
Journal of the Meteorological Society of Japan; Volume 91; No. 4; 539-543. - Terms of Use and Reproduction:
- Copyright, Distribution under U.S. Government purpose rights.
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