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Analysis of the spatiotemporal changes in terrestrial water storage anomaly and impacting factors over the typical mountains in China
Yang, Peng1,2; Zhan, Chesheng1; Xia, Jun1,3; Han, Jian1,2; Hu, Shi1
2018
Source PublicationINTERNATIONAL JOURNAL OF REMOTE SENSING
ISSN0143-1161
Volume39Issue:2Pages:505-524
Corresponding AuthorZhan, Chesheng(zhancs@igsnrr.ac.cn) ; Xia, Jun(xiaj@igsnrr.ac.cn)
AbstractBased on the terrestrial water storage anomaly (TWSA) from Gravity Recovery and Climate Experiment (GRACE) and Global Land Data Assimilation System, Tropical Rainfall Measuring Mission products, groundwater level data, and teleconnection indexes, combined with the Mann-Kendall test, the spatiotemporal distribution of TWSA and its potential drivers during 2002-2015 were explored over the mountains areas located in the transitional zone between the non-monsoon and monsoon areas in China. The major conclusions can be seen the follows: (1) as for the time series of TWSA from GRACE, the increasing trend with the rate of 0.15mm month(-1) was investigated over Karst area, and the decreasing trends with the rate of -0.61 and -0.32mm month(-1) were exhibited over Taihang Mountains and Hengduan Mountains; (2) the significant decreasing trend (p<0.05) of TWSA from GRACE was found over Taihang Mountains and the west of Hengduan Mountains, and the significant increasing trend (p<0.05) was explored over the north of Karst area; (3) precipitation played an important role in the changes of TWSA over Hengduan Mountains and Karst area, while the groundwater played a dominant role in the changes of TWSA over Taihang Mountains. The anthropogenic contributions of -92.9 +/- 22.3, 13.47 +/- 3.2, and 61.9 +/- 14.85mm yr(-1) to TWS were detected over the Taihang Mountains, Hengduan Mountains, and Karst area, respectively. In addition, El Nino-Southern Oscillation (ENSO) impacted on the changes of TWSA deeply over these three regions, especially the Hengduan Mountains and Karst area during 2002-2015.
DOI10.1080/01431161.2017.1388939
WOS KeywordTIME-VARIABLE GRAVITY ; DATA ASSIMILATION SYSTEM ; YANGTZE-RIVER BASIN ; DROUGHT CHARACTERIZATION ; SATELLITE-OBSERVATIONS ; TEMPERATURE TRENDS ; GRACE MEASUREMENTS ; CLIMATE-CHANGE ; MASS ; VARIABILITY
Indexed BySCI
Language英语
Funding ProjectNational Basic Research Program of China [973 Program][2015CB452701] ; National Natural Science Foundation of China[41571019]
Funding OrganizationNational Basic Research Program of China [973 Program] ; National Natural Science Foundation of China
WOS Research AreaRemote Sensing ; Imaging Science & Photographic Technology
WOS SubjectRemote Sensing ; Imaging Science & Photographic Technology
WOS IDWOS:000416848600012
PublisherTAYLOR & FRANCIS LTD
Citation statistics
Cited Times:2[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://ir.igsnrr.ac.cn/handle/311030/60997
Collection中国科学院地理科学与资源研究所
Corresponding AuthorZhan, Chesheng; Xia, Jun
Affiliation1.Chinese Acad Sci, Inst Geog Sci & Nat Resources Res, Key Lab Water Cycle & Related Land Surface Proc, Beijing 100101, Peoples R China
2.Univ Chinese Acad Sci, Coll Resources & Environm, Beijing, Peoples R China
3.Wuhan Univ, State Key Lab Water Resources & Hydropower Engn S, Wuhan, Hubei, Peoples R China
Recommended Citation
GB/T 7714
Yang, Peng,Zhan, Chesheng,Xia, Jun,et al. Analysis of the spatiotemporal changes in terrestrial water storage anomaly and impacting factors over the typical mountains in China[J]. INTERNATIONAL JOURNAL OF REMOTE SENSING,2018,39(2):505-524.
APA Yang, Peng,Zhan, Chesheng,Xia, Jun,Han, Jian,&Hu, Shi.(2018).Analysis of the spatiotemporal changes in terrestrial water storage anomaly and impacting factors over the typical mountains in China.INTERNATIONAL JOURNAL OF REMOTE SENSING,39(2),505-524.
MLA Yang, Peng,et al."Analysis of the spatiotemporal changes in terrestrial water storage anomaly and impacting factors over the typical mountains in China".INTERNATIONAL JOURNAL OF REMOTE SENSING 39.2(2018):505-524.
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