近70 a泾河流域径流变化及其驱动因素研究
收稿日期: 2021-05-07
修回日期: 2021-07-01
网络出版日期: 2022-01-21
基金资助
国家重点研发计划(2018YFC1508105);国家重点研发计划(2019YFC1510605);国家自然科学基金(51909274);国家自然科学基金(42001033);陕西省自然科学基础研 究计划项目(2021JQ-237);中国水科院五大人才计划(JZ0199A022021)
Runoff change and its driving factors in Jinghe River Basin in recent 70 years
Received date: 2021-05-07
Revised date: 2021-07-01
Online published: 2022-01-21
定量评价流域径流变化特征并开展其归因识别研究是应对气候变化实现水资源合理开发利用的基础。本研究以泾河流域为研究区,采用M-K检验、滑动t检验、小波分析等方法分析流域近70 a的水文气象要素变化特征,并基于Budyko假设评价气候变化和人类活动对径流变化的贡献率。结果表明:(1) 泾河流域年径流深以0.41 mm·a-1的速率减少,并在1996年发生显著减少突变,相较于突变前减少43.49%。(2) 流域年径流深第一、第二和第三主周期分别为41 a、58 a和15 a特征时间尺度。(3) 流域径流变化对汛期降水量和潜在蒸发量的变化均较为敏感,流域径流变化对降水量的敏感程度是潜在蒸发量的2.3~5.3倍。(4) 人类活动是流域径流变化的主要影响因素,对年、汛期和非汛期径流变化的贡献率分别为90.43%、63.75%和94.08%。研究结果可为区域水资源综合管理与科学调配提供科学依据,并对黄土高原水土流失治理有一定的指导意义。
刘宇 , 管子隆 , 田济扬 , 刘荣华 , 关荣浩 . 近70 a泾河流域径流变化及其驱动因素研究[J]. 干旱区地理, 2022 , 45(1) : 17 -26 . DOI: 10.12118/j.issn.1000–6060.2021.212
Quantitative evaluation and attribution identification of runoff change characteristics are the basis for the rational development and utilization of water resources in response to climate change. This study examines the hydrological and meteorological element change characteristics of the Jinghe River Basin in China over the last 70 years, using the M-K test, sliding t-test, wavelet analysis, and other methods to assess the contribution of climate change and human activities to runoff changes based on Budyko assumptions. The results show that: (1) The annual runoff depth of the Jinghe River Basin decreased at a rate of 0.41 mm·a-1, and the abrupt change occurred in 1996, which decreased by 43.49% compared with that before the abrupt change. (2) The characteristic time scales for the first, second, and third main periods of annual runoff depth were 41 a, 58 a, and 15 a, respectively. (3) During flood season, runoff variation is sensitive to both precipitation and potential evapotranspiration, with precipitation sensitivity ranging from 2.3 to 5.3 times that of potential evapotranspiration. (4) Human activities are the main influencing factor of runoff variation in the basin, contributing 90.43%, 63.75%, and 94.08% to annual, flood season, and nonflood season runoff variation, respectively. The findings of the study can serve as a scientific foundation for the comprehensive management and scientific deployment of regional water resources and serve as a guide for the control of soil erosion in the Loess Plateau.
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