Arid
DOI10.1002/2015JD023294
Simulation and classification of the impacts of projected climate change on flow regimes in the arid Hexi Corridor of Northwest China
Zhang, Yongyong1; Fu, Guobin2; Sun, Boyang3; Zhang, Shifeng1; Men, Baohui4
通讯作者Zhang, Yongyong
来源期刊JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES
ISSN2169-897X
EISSN2169-8996
出版年2015
卷号120期号:15页码:7429-7453
英文摘要

Traditional assessment approaches of climate change on flow regimes usually focus on flow magnitude and cannot capture the overall variation of flow regimes (e.g., variability, frequency, duration, timing, and rating). The Hexi Corridor, which is a typical arid and semiarid region in Northwest China, was selected as the study area. Streamflows were simulated by an integrated water system model in a historical period (1985-2005) and three future periods (2030s, 2050s, and 2070s). Twenty-nine global climate models were picked from the Coupled Model Intercomparison Project Phase 5 based on projection performance, and the high (RCP85) and intermediate (RCP45) ranges of Representative Concentration Pathways were selected for future scenario analysis. All the streamflows were characterized in detail by flow regime metrics, including the magnitude, variability, and frequency of the overall flow events. The regional impacts of climate change were assessed and clustered into several similar spatial patterns. Results showed that the projected climate change would sensibly increase the magnitudes of average and low flows (75th percentile), as well as the frequencies of low and high flows (25th percentile), but decrease the flow variability. By contrast, it would not sensibly change the magnitude of high-flow events. The flow regime variations of all scenarios and periods were clustered into three robust classes (highly, moderately, and slightly impacted classes) in the entire region. The flow regimes would be highly and moderately impacted in the middle stream and downstream with large-sized and semidesert catchments but slightly impacted in the upper and middle streams with small-sized and montane vegetation catchments. The impacted classes will sensibly vary at most stations in different future periods because of the spatial differences of climate change. This study would provide scientific support to implement the integrated adaptive water resource management for climate change at regional scales in the arid Hexi Corridor.


英文关键词flow regime characteristics climate change hydrological model statistical classification Hexi Corridor
类型Article
语种英语
国家Peoples R China ; Australia
收录类别SCI-E
WOS记录号WOS:000360501900009
WOS关键词SHIYANG RIVER-BASIN ; GLOBAL WATER-RESOURCES ; SEMIARID REGIONS ; HEIHE RIVER ; LAND-USE ; MODEL ; RUNOFF ; STREAMFLOW ; SCENARIOS ; MANAGEMENT
WOS类目Meteorology & Atmospheric Sciences
WOS研究方向Meteorology & Atmospheric Sciences
来源机构中国科学院地理科学与资源研究所 ; 北京师范大学 ; Commonwealth Scientific and Industrial Research Organisation
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/188685
作者单位1.Chinese Acad Sci, Key Lab Water Cycle & Related Land Surface Proc, Inst Geog Sci & Nat Resources Res, Beijing, Peoples R China;
2.CSIRO, Land & Water Flagship, Wembley, WA, Australia;
3.Beijing Normal Univ, Sch Environm, Beijing 100875, Peoples R China;
4.North China Elect Power Univ, Renewable Energy Inst, Beijing, Peoples R China
推荐引用方式
GB/T 7714
Zhang, Yongyong,Fu, Guobin,Sun, Boyang,et al. Simulation and classification of the impacts of projected climate change on flow regimes in the arid Hexi Corridor of Northwest China[J]. 中国科学院地理科学与资源研究所, 北京师范大学, Commonwealth Scientific and Industrial Research Organisation,2015,120(15):7429-7453.
APA Zhang, Yongyong,Fu, Guobin,Sun, Boyang,Zhang, Shifeng,&Men, Baohui.(2015).Simulation and classification of the impacts of projected climate change on flow regimes in the arid Hexi Corridor of Northwest China.JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES,120(15),7429-7453.
MLA Zhang, Yongyong,et al."Simulation and classification of the impacts of projected climate change on flow regimes in the arid Hexi Corridor of Northwest China".JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES 120.15(2015):7429-7453.
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