The Contribution of Rain Gauges in the Calibration of the IMERG Product: Results from the First Validation over Spain

Author:

Tapiador Francisco J.1,Navarro Andrés2,García-Ortega Eduardo2,Merino Andrés2,Sánchez José Luis2,Marcos Cecilia3,Kummerow Christian4

Affiliation:

1. Department of Environmental Sciences, Institute of Environmental Sciences, Earth and Space Sciences Research Group, University of Castilla–La Mancha, Toledo, Spain

2. Department of Applied Physics, Atmospheric Physics Group, University of León, León, Spain

3. Spanish Meteorological Agency (AEMET), Madrid, Spain

4. Department of Atmospheric Science, Colorado State University, Fort Collins, Colorado, and University of Castilla–La Mancha, Toledo, Spain

Abstract

AbstractAfter 5 years in orbit, the Global Precipitation Measurement (GPM) mission has produced enough quality-controlled data to allow the first validation of their precipitation estimates over Spain. High-quality gauge data from the meteorological network of the Spanish Meteorological Agency (AEMET) are used here to validate Integrated Multisatellite Retrievals for GPM (IMERG) level 3 estimates of surface precipitation. While aggregated values compare notably well, some differences are found in specific locations. The research investigates the sources of these discrepancies, which are found to be primarily related to the underestimation of orographic precipitation in the IMERG satellite products, as well as to the number of available gauges in the GPCC gauges used for calibrating IMERG. It is shown that IMERG provides suboptimal performance in poorly instrumented areas but that the estimate improves greatly when at least one rain gauge is available for the calibration process. A main, generally applicable conclusion from this research is that the IMERG satellite-derived estimates of precipitation are more useful (r2 > 0.80) for hydrology than interpolated fields of rain gauge measurements when at least one gauge is available for calibrating the satellite product. If no rain gauges were used, the results are still useful but with decreased mean performance (r2 ≈ 0.65). Such figures, however, are greatly improved if no coastal areas are included in the comparison. Removing them is a minor issue in terms of hydrologic impacts, as most rivers in Spain have their sources far from the coast.

Funder

Ministerio de Economía, Industria y Competitividad, Gobierno de España

Ministry of Science, Innovation and Universities

Consejería de Educación, Junta de Castilla y León

Korea Meteorological Administration

Publisher

American Meteorological Society

Subject

Atmospheric Science

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