障碍物
联轴节(管道)
学位(音乐)
流域
可持续发展
水资源
资源(消歧)
相互依存
环境科学
自然资源
生态学
构造盆地
持续性
环境资源管理
钥匙(锁)
地理
稀缺
水安全
可持续管理
业务
水资源管理
限制
地质学
管理制度
自然资源管理
资源管理(计算)
作者
Siyang Liu,Liping Zhang,Yanyan Chi,Le Fu,Jingjing Wang,Xiahui Wang
标识
DOI:10.1016/j.ecolind.2025.114461
摘要
• Assesses WEE system coordination across the Yellow River Basin during 2015–2022. • Identifies water resources as the primary driver shaping WEE system coordination. • Applies coupling degree, kernel density, and obstacle analysis to evaluate WEE coordination. • Offers targeted management insights and policy suggestions to enhance sustainable coordination. Water, energy, and ecological security are fundamental to the sustainable development of river basins, with their interdependencies significantly shaping regional development and environmental quality. This study evaluates the coupling coordination degree of the Water-Energy-Ecology (WEE) system in the Yellow River Basin (YRB) from 2015 to 2022, utilizing a methodology that integrates coupling coordination degree analysis, kernel density estimation, and obstacle factor diagnosis. The research systematically examines the spatiotemporal evolution of WEE coupling coordination across provincial regions and identifies key constraints influencing system dynamics. Results indicate that while the overall coupling coordination degree of the WEE system in the YRB exhibited a gradual upward trend during the study period with provincial increases ranging from 0.020 to 0.068, most provinces remained at a preliminary coordination stage, such as “on the brink of disorder” or “mild imbalance”, reflecting persistent systemic imbalances. Water resource availability emerged as the primary limiting factor, with stark regional disparities: the upper reaches possess abundant water resources but suffer from low utilization efficiency, whereas the middle and lower reaches face acute water scarcity despite higher utilization rates. Furthermore, provincial variations in coupling coordination degree progression were closely linked to heterogeneous natural endowments and socioeconomic development levels. Crucially, the study shows that optimizing water and energy use, especially where resources are scarce, strengthens ecological carrying capacity and stabilizes the WEE system. These findings provide theoretical and practical insights for reconciling water-energy-ecology conflicts in large river basins, supporting coordinated regional conservation and development strategies.
科研通智能强力驱动
Strongly Powered by AbleSci AI