首页> 外文期刊>Water Resources Management >Conjunctive use of Inter-Basin Transferred and Desalinated Water in a Multi-Source Water Supply System Based on Cost-Benefit Analysis
【24h】

Conjunctive use of Inter-Basin Transferred and Desalinated Water in a Multi-Source Water Supply System Based on Cost-Benefit Analysis

机译:基于成本效益分析的流域间淡化水在多水源供水系统中的联合使用

获取原文
获取原文并翻译 | 示例
           

摘要

Water shortage has forced coastal cities to seek multi-source water supply with a focus on inter-basin water and desalinated seawater. The differences of water supply costs pose a challenge in the optimal use of multiple water resources. This paper aims to understand the impact of desalinated seawater's variable costs on multi-source water supply through a cost-benefit analysis method based on a multi-objective optimization model, considering different combination scenarios of desalination yield, streamflow condition, seawater desalting plant (SDP) scheme, water shortage index and utilization ratio of the SDP. The application in the coastal city Tianjin, China shows that the desalination yield has an impact on the tradeoff between the water shortage index and the total water supply cost and an optimal desalination yield can be determined at a turning point. And where the turning point appears is influenced by the utilization ratio of the SDP and streamflow conditions of inter-basin water. Moreover, a single centralized SDP is found to have an overall lower water supply cost than several decentralized small-sized SDPs. Lower water shortage index leads to higher cost, and the unit decrease of shortage index will need more added cost when the shortage index is very low. This method is proven to be effective in identifying the best conjunctive use of inter-basin water and desalinated seawater, which can contribute to relieve urban water shortage.
机译:水资源短缺迫使沿海城市寻求集中于流域间水和淡化海水的多源水供应。供水成本的差异对多种水资源的最佳利用提出了挑战。本文旨在通过基于多目标优化模型的成本效益分析方法,考虑淡化产量,水流条件,海水淡化厂(SDP)的不同组合情景,来了解淡化海水的可变成本对多源水供应的影响。方案,缺水指数和SDP利用率。在沿海城市天津的应用表明,海水淡化产量会影响缺水指数与总供水成本之间的权衡,并且可以在转折点确定最佳的海水淡化产量。而拐点出现的位置则受SDP利用率和流域间水流条件的影响。此外,发现单个集中式SDP的供水成本总体上低于几个分散的小型SDP。缺水指数越低,成本越高,当缺水指数非常低时,缺水指数的单位减少将需要更多的增加成本。实践证明,该方法可有效识别流域间水和淡化海水的最佳结合使用,从而有助于缓解城市缺水问题。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号