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How do GPM and TRMM precipitation products perform in alpine regions? A case study in northwestern China's Qilian Mountains
被引:0
|作者:
SUN Weijun
[1
]
CHEN Rensheng
[2
]
WANG Lei
[1
,2
]
WANG Yingshan
[1
]
HAN Chuntan
[2
]
HUAI Baojuan
[1
]
机构:
[1] College of Geography and Environment, Shandong Normal University
[2] Qilian Alpine Ecology & Hydrology Research Station, Key Laboratory of Ecohydrology of Inland River Basin,Northwest Institute of Eco-Environment and Resources, CAS
基金:
国家重点研发计划;
中国国家自然科学基金;
关键词:
D O I:
暂无
中图分类号:
P426.6 [降水];
学科分类号:
0706 ;
070601 ;
摘要:
Satellite technologies provide valuable areal precipitation datasets in alpine mountains. However, coarse resolution still limits the use of satellite precipitation datasets in hydrological and meteorological research. We evaluated different time scales and precipitation magnitudes of Tropical Rainfall Measurement Mission 3B43 V7(TRMM) and Global Precipitation Measurement(GPM) products for alpine regions using ground precipitation datasets from January 2015 to June 2019 obtained from 25 national meteorological stations and 11 sets of T-200B weighing precipitation gauges in the Qilian Mountains. The results indicated that GPM outperformed TRMM at all temporal scales at an elevation <3500 m with a higher probability of detection(POD), false alarm ratio(FAR), and frequency bias index(FBI) and performed best at 3000 m; TRMM performed better than GPM at an elevation >3500 m, with the best performance at 4000 m. GPM and TRMM had the best estimation accuracy in areas with monthly precipitation of 30 mm and 40 mm, respectively. Both TRMM and GPM products underestimated mid to large daily precipitation and overestimated light daily precipitation averaging <2 mm/d. This research not only emphasizes the superiority of GPM/TRMM in different regions but also indicates the limitations of precipitation algorithms.
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页码:913 / 931
页数:19
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