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Article

Performance Assessment of GSMaP and GPM IMERG Products during Typhoon Mangkhut

1
Key Laboratory of Environment Change and Resources Use in Beibu Gulf, Ministry of Education, Nanning Normal University, Nanning 530001, China
2
School of Geographic Sciences and Planning, Nanning Normal University, Nanning 530001, China
3
Key Laboratory of Tropical Atmosphere-Ocean System, School of Atmospheric Sciences, Sun Yat-Sen University, Zhuhai 519000, China
4
Southern Laboratory of Ocean Science and Engineering, Zhuhai 519000, China
5
Guangdong Province Key Laboratory for Climate Change and Natural Disaster Studies, Sun Yat-Sen University, Zhuhai 519000, China
*
Author to whom correspondence should be addressed.
Atmosphere 2021, 12(2), 134; https://doi.org/10.3390/atmos12020134
Submission received: 24 December 2020 / Revised: 12 January 2021 / Accepted: 14 January 2021 / Published: 21 January 2021

Abstract

This paper evaluated the latest version 6.0 Global Satellite Mapping of Precipitation (GSMaP) and version 6.0 Integrated Multi-satellitE Retrievals for Global Precipitation Measurement (IMERG) products during 2018 Typhoon Mangkhut in China. The reference data is the rain gauge datasets from Gauge-Calibrated Climate Prediction Centre (CPC) Morphing Technique (CMORPHGC). The products for comparison include the GSMaP near-real-time, Microwave-IR merged, and gauge-calibrated (GSMaP_NRT, GSMaP_MVK, and GSMaP_Gauge) and the IMERG Early, Final, and Final gauge-calibrated (IMERG_ERUncal, IMERG_FRUncal, and IMERG_FRCal) products. The results show that (1) both GSMaP_Gauge and IMERG_FRCal considerably reduced the bias of their satellite-only products. GSMaP_Gauge outperforms IMERG_FRCal with higher Correlation Coefficient (CC) values of about 0.85, 0.78, and 0.50; lower Fractional Standard Error (FSE) values of about 18.00, 18.85, and 29.30; and Root-Mean-Squared Error (RMSE) values of about 12.12, 33.35, and 32.99 mm in the rainfall centers over mainland China, southern China, and eastern China, respectively. (2) GSMaP products perform better than IMERG products, with higher Probability of Detection (POD) and Critical Success Index (CSI) and lower False Alarm Ratio (FAR) in detecting rainfall occurrence, especially for high rainfall rates. (3) For area-mean rainfall, IMERG performs worse than GSMaP in the rainfall centers over mainland China and southern China but shows better performance in the rainfall center over eastern China. GSMaP_Gauge and IMERG_FRCal perform well in the three regions with a high CC (0.79 vs. 0.94, 0.81 vs. 0.96, and 0.95 vs. 0.97) and a low RMSE (0.04 vs. 0.06, 0.40 vs. 0.59, and 0.19 vs. 0.34 mm). These useful findings will help algorithm developers and data users to better understand the performance of GSMaP and IMERG products during typhoon precipitation events.
Keywords: rainfall; typhoon Mangkhut; GSMaP; IMERG rainfall; typhoon Mangkhut; GSMaP; IMERG

Share and Cite

MDPI and ACS Style

Li, X.; Chen, S.; Liang, Z.; Huang, C.; Li, Z.; Hu, B. Performance Assessment of GSMaP and GPM IMERG Products during Typhoon Mangkhut. Atmosphere 2021, 12, 134. https://doi.org/10.3390/atmos12020134

AMA Style

Li X, Chen S, Liang Z, Huang C, Li Z, Hu B. Performance Assessment of GSMaP and GPM IMERG Products during Typhoon Mangkhut. Atmosphere. 2021; 12(2):134. https://doi.org/10.3390/atmos12020134

Chicago/Turabian Style

Li, Xiaoyu, Sheng Chen, Zhenqing Liang, Chaoying Huang, Zhi Li, and Baoqing Hu. 2021. "Performance Assessment of GSMaP and GPM IMERG Products during Typhoon Mangkhut" Atmosphere 12, no. 2: 134. https://doi.org/10.3390/atmos12020134

APA Style

Li, X., Chen, S., Liang, Z., Huang, C., Li, Z., & Hu, B. (2021). Performance Assessment of GSMaP and GPM IMERG Products during Typhoon Mangkhut. Atmosphere, 12(2), 134. https://doi.org/10.3390/atmos12020134

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