Inclusion of tank configurations as a variable in the cost optimization of branched piped-water networks

N. Hooda, O. Damani
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引用次数: 3

Abstract

Abstract. The classic problem of the capital cost optimization of branched piped networks consists of choosing pipe diameters for each pipe in the network from a discrete set of commercially available pipe diameters. Each pipe in the network can consist of multiple segments of differing diameters. Water networks also consist of intermediate tanks that act as buffers between incoming flow from the primary source and the outgoing flow to the demand nodes. The network from the primary source to the tanks is called the primary network, and the network from the tanks to the demand nodes is called the secondary network. During the design stage, the primary and secondary networks are optimized separately, with the tanks acting as demand nodes for the primary network. Typically the choice of tank locations, their elevations, and the set of demand nodes to be served by different tanks is manually made in an ad hoc fashion before any optimization is done. It is desirable therefore to include this tank configuration choice in the cost optimization process itself. In this work, we explain why the choice of tank configuration is important to the design of a network and describe an integer linear program model that integrates the tank configuration to the standard pipe diameter selection problem. In order to aid the designers of piped-water networks, the improved cost optimization formulation is incorporated into our existing network design system called JalTantra.
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在分支管网成本优化中纳入水箱配置变量
摘要分支管网资金成本优化的经典问题是从一组离散的市售管径中为管网中的每条管道选择管径。管网中的每根管道都可以由不同直径的多个管段组成。水网也由中间水箱组成,作为从主要来源流入的水流和向需求节点流出的水流之间的缓冲。从主源到储罐的网络称为主网络,从储罐到需求节点的网络称为次网络。在设计阶段,主次网络分别进行优化,储罐作为主次网络的需求节点。通常,在进行任何优化之前,储罐位置的选择、它们的高度以及由不同储罐提供服务的需求节点集都是以一种特别的方式手工制作的。因此,在成本优化过程本身中包括这种储罐配置选择是可取的。在这项工作中,我们解释了为什么储罐配置的选择对网络设计很重要,并描述了一个将储罐配置集成到标准管径选择问题的整数线性规划模型。为了帮助自来水管网的设计者,改进的成本优化公式被纳入我们现有的网络设计系统,称为JalTantra。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Drinking Water Engineering and Science
Drinking Water Engineering and Science Environmental Science-Water Science and Technology
CiteScore
3.90
自引率
0.00%
发文量
3
审稿时长
40 weeks
期刊最新文献
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