Evaluating the double-kernel smoothing technique of blending TRMM and gauge data to identify flood events in the Xiangjiang River Basin, China

被引:1
|
作者
Yang, Yumeng [1 ,2 ]
Ma, Yunjia [1 ]
Liu, Jingyu [2 ]
Liu, Baoyin [3 ]
Du, Juan [2 ]
He, Shanfeng [1 ]
机构
[1] Qufu Normal Univ, Sch Geog & Tourism, Rizhao, Peoples R China
[2] Beijing Normal Univ, Key Lab Environm Change & Nat Disaster, Minist Educ, Beijing, Peoples R China
[3] Chinese Acad Sci, Inst Sci & Dev, Beijing, Peoples R China
关键词
TRMM; precipitation evaluation; double-kernel smoothing technique; flood events; HEC-HMS; PRECIPITATION ANALYSIS TMPA; GROUND-BASED PRECIPITATION; HIGH-RESOLUTION SATELLITE; PRODUCTS; PERFORMANCE; PERSIANN; REGIONS; INDIA; IMERG; 3B42;
D O I
10.1080/19475705.2023.2221991
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
In the recent decades, mass casualties and property losses are caused by flood events. A combination of satellite and hydrological methods has been promoted owing to the advantages of satellite precipitation products (SPPs), such as their wide coverage and high spatiotemporal resolution; these benefits may make up for the deficiencies of gauge data and make SPPs a good supplementary data source, especially for sparsely gauged areas. The present study employs the double-kernel smoothing technique (DS) to integrate TRMM precipitation data and gauge data and evaluates the performance of this method in identifying extreme flood events via the Hydrological Engineering Center-Hydrological Modeling System (HEC-HMS) in the humid Xiangjiang River Basin, China. Results show that the HEC-HMS driven by TRMM precipitation data can capture the 9 selected flood events accurately both before and after the merging process despite some deficiencies in the TRMM precipitation data. In addition, the merging method generally improved the consistency (CC increased from 0.04 to 0.24) and rainfall-detection capability of the TRMM precipitation data (FAR decreased by 9.12%, POD increased by 56.91% and HSS increased by 15.43%) and also promoted the overall hydrological simulation accuracy and reliability (the average CC increased from 0.86 to 0.96, the average NSE increased from 0.58 to 0.73). However, the blended TRMM precipitation data did not always outperform the nonblended data in terms of certain flood feature simulation details, such as the flood volume, flood peak and peak time.
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页数:19
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