水资源
缺水
雨水收集
再生水
城市化
资源(消歧)
环境科学
北京
城市规划
水资源管理
用水
水质
水资源综合管理
节约用水
环境工程
环境规划
废水
工程类
计算机科学
土木工程
中国
地理
经济
生态学
计算机网络
生物
经济增长
考古
作者
Yuefei Huang,J. Chen,Siyu Zeng,Fengwei Sun,Xinzhou Dong
摘要
Urban water is facing the challenges of both scarcity and water quality deterioration. Consideration of nonconventional water resources has increasingly become essential over the last decade in urban water resource planning. In addition, rapid urbanization and economic development has led to an increasing uncertain water demand and fragile water infrastructures. Planning of urban water resources is thus in need of not only an integrated consideration of both conventional and nonconventional urban water resources including reclaimed wastewater and harvested rainwater, but also the ability to design under gross future uncertainties for better reliability. This paper developed an integrated nonlinear stochastic optimization model for urban water resource evaluation and planning in order to optimize urban water flows. It accounted for not only water quantity but also water quality from different sources and for different uses with different costs. The model successfully applied to a case study in Beijing, which is facing a significant water shortage. The results reveal how various urban water resources could be cost-effectively allocated by different planning alternatives and how their reliabilities would change.
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