Open AccessEnvironmental Science

R. Joyce, J. Janowiak, P. Arkin, P. Xie

2004.6.1JOURNAL OF HYDROMETEOROLOGY

DOI: 10.1175/1525-7541(2004)005<0487:camtpg>2.0.co;2

tlooto Summary

A method to produce high spatial and temporal resolution global precipitation estimates from passive microwave and infrared data is presented.

Abstract

Abstract A new technique is presented in which half-hourly global precipitation estimates derived from passive microwave satellite scans are propagated by motion vectors derived from geostationary satellite infrared data. The Climate Prediction Center morphing method (CMORPH) uses motion vectors derived from half-hourly interval geostationary satellite IR imagery to propagate the relatively high quality precipitation estimates derived from passive microwave data. In addition, the shape and intensity of the precipitation features are modified (morphed) during the time between microwave sensor scans by performing a time-weighted linear interpolation. This process yields spatially and temporally complete microwave-derived precipitation analyses, independent of the infrared temperature field. CMORPH showed substantial improvements over both simple averaging of the microwave estimates and over techniques that blend microwave and infrared information but that derive estimates of precipitation from infrared data...

Citation format

JOYCE, R., et al. CMORPH: A method that produces global precipitation estimates from passive microwave and infrared data at high spatial and temporal resolution. JOURNAL OF HYDROMETEOROLOGY, 2004, 5: 487–503.