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首页> 外文期刊>Journal of Water Resources Planning and Management >Dual Water Distribution Network Design under Triple-Bottom-Line Objectives
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Dual Water Distribution Network Design under Triple-Bottom-Line Objectives

机译:三重底线目标下的双配水管网设计

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Rapid urban growth has stressed limited supplies of high-quality water sources and water shortage has become a major issue in worldwide. Today, sustainable water supply to meet growing demand is a significant concern for water utilities. Developing additional high-quality sources is not necessarily available; it may be costly to convey water from sources that are usually located far from users or there may be legal battles over water rights. A well-proven source that does not have significant conveyance costs and that does not pose water righi conflicts is wastewater reclamation for nonpotable uses. A few studies have been completed for the design of reclaimed water distribution through a parallel pipe system. In earlier works, however, attention has mainly focused on the recycling of effluent for large users, such as goll courses, parks, and schools with the objective of minimizing economic cost. As reclaimed water takes on a larger role in many communities' water supply, the questions of how and what water to deliver to consumers must be addressed. To that end, this study presents a multi-objective optimization algorithm for designing dual-water distribution systems that recyce effluents for local residential nonpotable uses Triple-bottom-line objectives are posed, as well as economic costs for pipe and pump installation and operation, environmental costs rep resented by greenhouse gas production, and system reliability against mechanical failure representing social cost. Under the premise that the systems will be constructed in a new community, thorough comparisons are made between a conventional single system and three alternative dual systems. The resulting problems are mixed integer problems and solved using a genetic algorithm (GA) linked to a hydraulic simulatior model. Applications begin to demonstrate water deliver trade-offs and can guide policy decisions on appropriate system types taking a fullei picture of system costs and effects.
机译:城市的快速增长已强调了高质量水源的供应有限,而水资源短缺已成为世界范围内的主要问题。如今,满足不断增长的需求的可持续供水已成为水务公司的重要关切。开发额外的高质量资源不一定可用;从通常远离用户的水源输送水可能很昂贵,或者在水权方面可能存在法律纠纷。一个公认的,不产生重大运输成本且不会造成水质冲突的来源是用于非饮用水的废水回收。对于通过平行管道系统进行中水分配设计的一些研究已经完成。但是,在早期的工作中,注意力主要集中在为大用户(如泥炭课程,公园和学校)回收废水,目的是将经济成本降至最低。随着再生水在许多社区的供水中扮演着更重要的角色,必须解决如何以及向消费者提供什么水的问题。为此,本研究提出了一种多目标优化算法,用于设计可用于当地居民非饮用水用途的废水回用的双水分配系统,并提出了三重底线目标,以及管道和泵的安装和运行的经济成本,温室气体生产所代表的环境成本,以及抵抗机械故障的系统可靠性代表了社会成本。在将系统构建在新社区中的前提下,对常规的单个系统和三个替代的双系统进行了全面的比较。产生的问题是混合整数问题,并使用与液压仿真模型链接的遗传算法(GA)进行了求解。应用程序开始演示水的权衡取舍,并可以在全面了解系统成本和效果的情况下指导有关适当系统类型的政策决策。

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