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Optimization Approach to Designing Water Supply Systems in Non-Coastal Areas Suffering from Water Scarcity

机译:缺水地区非沿海地区供水系统设计的优化方法

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摘要

This article presents a novel optimization approach to designing water supply systems in non-coastal areas with water scarcity. In such areas, high water demand caused by population increases and economic development can only be satisfied with seawater supply. Furthermore, most of the non-coastal users are located at long distances and sometimes at altitudes very diverse from the coastline, meaning long pipelines and several pumping stations will be required to effectively supply water. The proposed optimization approach based on a mixed integer nonlinear programming model offers optimal designs of water supply systems from an economic and technical perspective. It determines the location and size of desalination plants and the design of the water transport network including pipelines of specified length and diameter and pumping stations that minimize capital and operational costs of the whole system. A case study in a hyper-arid region of Chile was used to validate the applicability of the proposed model and the results show its aptitude for determining global optimal solutions to real-scale problems.
机译:本文提出了一种新颖的优化方法,用于在缺水的非沿海地区设计供水系统。在这些地区,由人口增加引起的高用水需求和经济发展只能通过海水供应来满足。此外,大多数非沿海用户位于距离海岸线有时很远的地方,有时海拔高度非常不同,这意味着需要长的管道和几个泵站才能有效地供水。所提出的基于混合整数非线性规划模型的优化方法从经济和技术角度提供了供水系统的优化设计。它确定了海水淡化厂的位置和规模,以及包括指定长度和直径的管线以及泵站在内的输水网络的设计,这些管线可以使整个系统的资金和运营成本降至最低。在智利的一个高干旱地区进行了案例研究,以验证该模型的适用性,结果表明该模型对于确定针对实际问题的全局最优解具有一定的适用性。

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