DocumentCode :
826801
Title :
QuikSCAT wind retrievals for tropical cyclones
Author :
Yueh, Simon H. ; Stiles, Bryan W. ; Liu, W. Timothy
Author_Institution :
Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA, USA
Volume :
41
Issue :
11
fYear :
2003
Firstpage :
2616
Lastpage :
2628
Abstract :
The use of QuikSCAT data for wind retrievals of tropical cyclones is described. The evidence of QuikSCAT σ0 dependence on wind direction for >30-m/s wind speeds is presented. The QuikSCAT σ0s show a peak-to-peak wind direction modulation of ∼1 dB at 35-m/s wind speed, and the amplitude of modulation decreases with increasing wind speed. The decreasing directional sensitivity to wind speed agrees well with the trend of QSCAT1 model function at near 20 m/s. A correction of the QSCAT1 model function for above 23-m/s wind speed is proposed. We explored two microwave radiative transfer models to correct the attenuation and scattering effects of rain for wind retrievals. One is derived from the collocated QuikSCAT and Special Sensor Microwave/Imager (SSM/I) dataset, and the other one is a published parametric model developed for rain radars. These two radiative transfer models account for the effects of volume scattering, scattering from rain-roughened surfaces and rain attenuation. The models suggest that the σ0s of wind-roughened sea surfaces for 40-50-m/s winds are comparable to the σ0s of rain contributions for up to about 10-15 mm/h. Both radiative transfer models have been used to retrieve the ocean wind vectors from the collocated QuikSCAT and SSM/I rain rate data for several tropical cyclones. The resulting wind speed estimates of these tropical cyclones show improved agreement with the wind fields derived from the best track analysis and Holland´s model for up to about 15-mm/h SSM/I rain rate. A comparative analysis of maximum wind speed estimates suggests that other rain parameters likely have to be considered for further improvements.
Keywords :
atmospheric techniques; meteorological radar; ocean waves; radiative transfer; spaceborne radar; storms; wind; QSCAT1 model function; QuikSCAT wind retrievals; SSM/I dataset; SSM/I rain rate data; Special Sensor Microwave/Imager dataset; attenuation; directional sensitivity; hurricane; microwave radiative transfer models; ocean wind vectors; radiative transfer models; rain attenuation; rain-roughened surfaces; scattering; tropical cyclones; volume scattering; wind direction; wind speed; Amplitude modulation; Attenuation; Image sensors; Information retrieval; Microwave sensors; Radar scattering; Rain; Sea surface; Tropical cyclones; Wind speed;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/TGRS.2003.814913
Filename :
1245249
Link To Document :
بازگشت