Can the GPM IMERG Hourly Products Replicate the Variation in Precipitation During the Wet Season Over the Sichuan Basin, China?
Abstract Two near‐real‐time and one post‐processing products from the Integrated Multi‐satellite Retrievals for Global Precipitation Measurement Mission (GPM IMERG) were evaluated during the period from 2016 to 2018 in the wet seasons (June–November) over the Sichuan Basin, China. Results indicated...
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Format: | Article |
Language: | English |
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American Geophysical Union (AGU)
2020-05-01
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Series: | Earth and Space Science |
Subjects: | |
Online Access: | https://doi.org/10.1029/2020EA001090 |
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author | H. Wang L. Wang J. He F. Ge Q. Chen S. Tang S. Yao |
author_facet | H. Wang L. Wang J. He F. Ge Q. Chen S. Tang S. Yao |
author_sort | H. Wang |
collection | DOAJ |
description | Abstract Two near‐real‐time and one post‐processing products from the Integrated Multi‐satellite Retrievals for Global Precipitation Measurement Mission (GPM IMERG) were evaluated during the period from 2016 to 2018 in the wet seasons (June–November) over the Sichuan Basin, China. Results indicated the following: (1) The three products could generally replicate strong precipitation well; however, significantly large biases were observed when detecting weak precipitation. (2) All three products replicated summer precipitation more accurately than autumn precipitation. The IMERG “early run” product (IMERG‐E) largely underestimated precipitation in the wet season, while the “latter run” (IMERG‐L) and “final run” products (IMERG‐F) could counteract this to a certain degree. (3) IMERG‐F captured weak, moderate, and strong precipitation well during the wet season, and IMERG‐E showed excellent potential in detecting different precipitation intensities. All the three products could replicate the diurnal cycle of the wet season precipitation. The findings of this study can facilitate the application of IMERG products in regions with complex topography and have also highlighted the potential of IMERG‐E for rapid early warning and forecast systems. |
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format | Article |
id | doaj.art-b44609a2ceb34796be4a7b2a9fd2e207 |
institution | Directory Open Access Journal |
issn | 2333-5084 |
language | English |
last_indexed | 2024-12-10T13:44:16Z |
publishDate | 2020-05-01 |
publisher | American Geophysical Union (AGU) |
record_format | Article |
series | Earth and Space Science |
spelling | doaj.art-b44609a2ceb34796be4a7b2a9fd2e2072022-12-22T01:46:30ZengAmerican Geophysical Union (AGU)Earth and Space Science2333-50842020-05-0175n/an/a10.1029/2020EA001090Can the GPM IMERG Hourly Products Replicate the Variation in Precipitation During the Wet Season Over the Sichuan Basin, China?H. Wang0L. Wang1J. He2F. Ge3Q. Chen4S. Tang5S. Yao6College of Atmospheric Sounding Chengdu University of Information Technology Chengdu ChinaChengdu Institute of Plateau Meteorology CMA/Heavy Rain and Drought‐Flood Disaster in Plateau and Basin Key Laboratory of Sichuan Province Chengdu ChinaKey Open Laboratory of Atmospheric Sounding China Meteorological Administration Chengdu ChinaSchool of Atmospheric Sciences/Plateau Atmosphere and Environment Key Laboratory of Sichuan Province/Joint Laboratory of Climate and Environment Change Chengdu University of Information Technology Chengdu ChinaCollege of Atmospheric Sounding Chengdu University of Information Technology Chengdu ChinaCollege of Atmospheric Sounding Chengdu University of Information Technology Chengdu ChinaCollege of Atmospheric Sounding Chengdu University of Information Technology Chengdu ChinaAbstract Two near‐real‐time and one post‐processing products from the Integrated Multi‐satellite Retrievals for Global Precipitation Measurement Mission (GPM IMERG) were evaluated during the period from 2016 to 2018 in the wet seasons (June–November) over the Sichuan Basin, China. Results indicated the following: (1) The three products could generally replicate strong precipitation well; however, significantly large biases were observed when detecting weak precipitation. (2) All three products replicated summer precipitation more accurately than autumn precipitation. The IMERG “early run” product (IMERG‐E) largely underestimated precipitation in the wet season, while the “latter run” (IMERG‐L) and “final run” products (IMERG‐F) could counteract this to a certain degree. (3) IMERG‐F captured weak, moderate, and strong precipitation well during the wet season, and IMERG‐E showed excellent potential in detecting different precipitation intensities. All the three products could replicate the diurnal cycle of the wet season precipitation. The findings of this study can facilitate the application of IMERG products in regions with complex topography and have also highlighted the potential of IMERG‐E for rapid early warning and forecast systems.https://doi.org/10.1029/2020EA001090Global Precipitation Measurementprecipitationcomplex topographyevaluation |
spellingShingle | H. Wang L. Wang J. He F. Ge Q. Chen S. Tang S. Yao Can the GPM IMERG Hourly Products Replicate the Variation in Precipitation During the Wet Season Over the Sichuan Basin, China? Earth and Space Science Global Precipitation Measurement precipitation complex topography evaluation |
title | Can the GPM IMERG Hourly Products Replicate the Variation in Precipitation During the Wet Season Over the Sichuan Basin, China? |
title_full | Can the GPM IMERG Hourly Products Replicate the Variation in Precipitation During the Wet Season Over the Sichuan Basin, China? |
title_fullStr | Can the GPM IMERG Hourly Products Replicate the Variation in Precipitation During the Wet Season Over the Sichuan Basin, China? |
title_full_unstemmed | Can the GPM IMERG Hourly Products Replicate the Variation in Precipitation During the Wet Season Over the Sichuan Basin, China? |
title_short | Can the GPM IMERG Hourly Products Replicate the Variation in Precipitation During the Wet Season Over the Sichuan Basin, China? |
title_sort | can the gpm imerg hourly products replicate the variation in precipitation during the wet season over the sichuan basin china |
topic | Global Precipitation Measurement precipitation complex topography evaluation |
url | https://doi.org/10.1029/2020EA001090 |
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