科研速览 · Science Skim继续刷下去 · Keep skimming →
◆ Agricultural Water Management2026-03-09· Perspective (graphical)

Simulation the effects of water resource regulation from the perspective of the water-energy-food-ecology nexus: A case study of Yulin city

Jiaqi Sun, Xiaojun Wang, Jianyun Zhang, Xu Zhang, Guoqing Wang, Pengfei Bai, Bo Bi, Congjian Sun, Dazhi Li, Lei Wu

原始摘要(英文原文)· Original abstract
Water scarcity is a critical constraint on sustainable development in arid and semi-arid regions of China, where growing demands from energy production, food security, and ecological protection intensify pressure on limited water resources. In Northwest China, the mismatch between water availability and sectoral demand has strengthened interdependencies and competition within the water-energy-food-ecology (WEFE co ) nexus, constraining high-quality regional development. This study develops an integrated assessment framework to quantify the impacts of water resource regulation on the WEFE co nexus. Using Yulin City as a representative arid region, scenario-based simulations are conducted to evaluate how water pricing and water efficiency improvements affect sectoral water use in the energy, food, and ecological sectors, as well as associated energy and food outputs. Changes in intersectoral dependence and competition are assessed using the stress contribution rate of energy, food, and ecology on water resources ( W WCR ) and the Comprehensive competition index of energy, food, and ecology on water resources ( C CCI ). Results show that water resource regulation induces distinct sectoral responses. A 30% increase in water price reduces the overall W WCR by 8.8% relative to the baseline, with the food sector exhibiting the largest decline (13.7%), followed by the energy sector (12.5%). This scenario yields the lowest C CCI among pricing schemes (1.23), indicating reduced intersectoral competition. A 30% improvement in water efficiency leads to a larger overall W WCR reduction of 10.67%, driven primarily by decreases in the energy (16.19%) and food (14.72%) sectors, with the C CCI declining to 1.20, the lowest among efficiency scenarios. Overall, coordinated water resource regulation effectively alleviates dependence and competition within the WEFE co nexus. Simultaneous regulation of water price or efficiency in both the energy and food sectors produces the strongest synergistic effect, offering policy-relevant insights for sustainable water management in water-scarce regions. • The WEFE co nexus links water, energy, food, and ecosystems for sustainable security. • Current studies focus on technical methods but lack policy and economic integration. • Yulin City faces severe water scarcity and rising water-use conflicts among sectors. • Existing models overlook WEFE co feedbacks, reducing policy evaluation accuracy. • A new simulation-based framework assesses water regulation impacts on the WEFE co nexus.
读原文 · Read the paper ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文 · Related

Simulation the effects of water resource regulation from the perspective of the water-energy-food-ecology nexus: A case study of Yulin city — 科研速览 Science Skim