Global Precipitation: A 17-Year Monthly Analysis Based on Gauge Observations, Satellite Estimates, and Numerical Model Outputs

Глобальные осадки: 17-летний ежемесячный анализ на основе данных наземных осадкомеров, спутниковых оценок и выходных данных численных моделей
Phillip A. Arkin, Pingping Xie
1997-11-01

CPC Merged Analysis of PrecipitationEl Niño-Southern OscillationNCEP–NCAR reanalysisglobal monthly precipitationsatellite precipitation estimates
Gridded fields (analyses) of global monthly precipitation have been constructed on a 2.5° latitude–longitude grid for the 17-yr period from 1979 to 1995 by merging several kinds of information sources with different characteristics, including gauge observations, estimates inferred from a variety of satellite observations, and the NCEP–NCAR reanalysis. This new dataset, which the authors have named the CPC Merged Analysis of Precipitation (CMAP), contains precipitation distributions with full global coverage and improved quality compared to the individual data sources. Examinations showed no discontinuity during the 17-yr period, despite the different data sources used for the different subperiods. Comparisons of the CMAP with the merged analysis of Huffman et al. revealed remarkable agreements over the global land areas and over tropical and subtropical oceanic areas, with differences observed over extratropical oceanic areas. The 17-yr CMAP dataset is used to investigate the annual and interannual variability in large-scale precipitation. The mean distribution and the annual cycle in the 17-yr dataset exhibit reasonable agreement with existing long-term means except over the eastern tropical Pacific. The interannual variability associated with the El Niño-Southern Oscillation phenomenon resembles that found in previous studies, but with substantial additional details, particularly over the oceans. With complete global coverage, extended period and improved quality, the 17-yr dataset of the CMAP provides very useful information for climate analysis, numerical model validation, hydrological research, and many other applications. Further work is under way to improve the quality, extend the temporal coverage, and to refine the resolution of the merged analysis.
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CMAP closely agrees with Huffman et al.’s merged precipitation analysis over global land and tropical/subtropical oceans, but differs over extratropical oceans.
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CMAP merges gauge observations, multiple satellite-based estimates, and NCEP–NCAR reanalysis to achieve full global coverage and improved quality over individual sources.
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CMAP reproduces established mean, annual-cycle, and ENSO-related precipitation variability, while providing additional detail, especially over the oceans; agreement is weaker over the eastern tropical Pacific.
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The dataset shows no discontinuity across the 17-year period despite changing data sources between subperiods.
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The study constructs the 17-year CPC Merged Analysis of Precipitation (CMAP), providing global monthly precipitation fields on a 2.5° grid from 1979–1995.

CPC Merged Analysis of Precipitation (CMAP) 17-year global monthly gridded precipitation dataset (1979–1995) on a 2.5° latitude–longitude grid

The spatial distribution, annual cycle, continuity, and interannual variability of precipitation, including ENSO-associated variability

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1997-11-01
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Phillip A. Arkin
Pingping Xie
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