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Urban water infrastructure optimization to reduce environmental impacts and costs
- Lim, Seong-Rin;
- Suh, Sangwon;
- Kim, Jung-Hoon;
- Park, Hung Suck
WEB OF SCIENCE
30SCOPUS
39초록
Urban water planning and policy have been focusing on environmentally benign and economically viable water management. The objective of this study is to develop a mathematical model to integrate and optimize urban water infrastructures for supply-side planning and policy: freshwater resources and treated wastewater are allocated to various water demand categories in order to reduce contaminants in the influents supplied for drinking water, and to reduce consumption of the water resources imported from the regions beyond a city boundary. A case study is performed to validate the proposed model. An optimal urban water system of a metropolitan city is calculated on the basis of the model and compared to the existing water system. The integration and optimization decrease (i) average concentrations of the influents supplied for drinking water, which can improve human health and hygiene; (ii) total consumption of water resources, as well as electricity, reducing overall environmental impacts; (iii) life cycle cost; and (iv) water resource dependency on other regions, improving regional water security. This model contributes to sustainable urban water planning and policy. (C) 2009 Elsevier Ltd. All rights reserved.
키워드
- 제목
- Urban water infrastructure optimization to reduce environmental impacts and costs
- 저자
- Lim, Seong-Rin; Suh, Sangwon; Kim, Jung-Hoon; Park, Hung Suck
- 발행일
- 2010-01
- 유형
- Article
- 권
- 91
- 호
- 3
- 페이지
- 630 ~ 637