地表径流
河岸带
中国
地理
引水
水资源管理
环境科学
水文学(农业)
生态学
栖息地
地质学
考古
岩土工程
生物
作者
Shengtian Yang,Huaixing Wang,Junnan Ding,Hezhen Lou,Zihao Pan,Baichi Zhou,Jiyi Gong,Yulian Wang,Hao Li,Yunmeng Dai,Jiekang Li,Yifan Zhu,Danyang Feng,Shengjun Wu
标识
DOI:10.1016/j.ejrh.2025.102342
摘要
Study region: The Miyun Reservoir (the terminal reservoir of the central line of the South-to-North Water Diversion Project, SNWDP) and the upstream watershed of the Miyun Reservoir (uwMR) in China. Study focus: Under the influence of runoff, water intake and water diversion, the water level of the terminal reservoir of the interbasin water diversion project greatly fluctuates, which poses a threat to the ecological security of the riparian zone. Therefore, the impact of runoff reduction on the ecological security of the riparian zone of the terminal reservoir must be evaluated. This study focuses on the Miyun Reservoir and the uwMR, and the impact of upstream runoff reduction on the ecological security of the riparian zone is systematically evaluated. New hydrological insights for the region: Runoff in each subbasin of the uwMR is decreasing, with climate change as the primary driver (66.69 %). As water consumption increases (0.44 × 108 m³/a) and water diversion reaches its upper limit (12.4 × 108 m3) by 2028, the riparian zone of the Miyun Reservoir will exhibit significant exposure (45.08 km2) by 2041. However, vegetation restoration is slow, requiring 19 years to stabilize, which poses a threat to riparian zone ecological security. Therefore, enhancing vegetation monitoring and implementing active restoration measures are essential. The findings offer valuable guidance for protecting the riparian ecosystems of terminal reservoirs of interbasin water transfer projects.
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