Introducing and evaluating the Climate Hazards center IMErg with Stations (CHIMES) - Timely station-enhanced Integrated Multi-satellitE Retrievals for Global Precipitation Measurement

Author:

Funk Chris C.1,Peterson Pete1,Huffman George J.2,Landsfeld Martin Francis1,Peters-Lidard Christa2,Davenport Frank1,Shukla Shraddhanand1,Peterson Seth1,Pedreros Diego H.3,Ruane Alex C.4,Mutter Carolyn45,Turner Will1,Harrison Laura1,Sonnier Austin1,Way-Henthorne Juliet1,Husak Gregory J.1

Affiliation:

1. a Climate Hazards Center, University of California, Santa Barbara, Santa Barbara, CA, United States

2. b NASA Goddard Space Flight Center, Greenbelt, MD, United States

3. c United States Geological Survey, Baltimore, MD, United States

4. d NASA Goddard Institute for Space Studies, New York, NY, United States

5. e Center for Climate Systems Research, Earth Institute, Columbia University, New York, NY, United States

Abstract

AbstractAs human exposure to hydro-climatic extremes and the number of in situ precipitation observations declines, precipitation estimates, such as the Integrated Multi-satellitE Retrievals for Global Precipitation Measurement (GPM) mission (IMERG), provide a critical source of information. Here, we present a new gauge-enhanced data set (CHIMES) designed to support global crop and hydrologic modeling and monitoring. CHIMES enhances the IMERG Late Run product using an updated Climate Hazards Center’s (CHC) high-resolution climatology (CHPclim) and low-latency rain-gauge observations. CHPclim differs from other products because it incorporates long-term averages of satellite precipitation, which increases CHPclim’s fidelity in data-sparse areas with complex terrain. This fidelity translates into performance increases in unbiased IMERGlate data, which we refer to as CHIME. This is augmented with gauge observations to produce CHIMES.The CHC’s curated rain-gauge archive contains valuable contributions from many countries. There are two versions of CHIMES: preliminary and final. The final product has more copious and better-curated station data. Every pentad and month, bias-adjusted IMERG late fields are combined with gauge observations to create pentadal and monthly CHIMESprelim and CHIMESfinal. Comparisons with pentadal, high-quality gridded station data show that IMERG late performs well (r=0.75), but has some systematic biases which can be reduced. Monthly cross-validation results indicate that unbiasing increases the variance explained from 50 to 63 percent and decreases the mean absolute error from 48 to 39 mm month−1. Gauge enhancement then increases the variance explained to 75 percent, reducing the mean absolute error to 27 mm month−1.

Publisher

American Meteorological Society

Subject

Atmospheric Science

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