Equitable supply in intermittently operated rural water networks in emerging economies

Varghese Kurian, Prasanna Mohandoss, Srinesh Chandrakesa, Saravanan Chinnusamy, Shankar Narasimhan, Sridharakumar Narasimhan
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Abstract

Abstract Many operators of water distribution networks (WDNs) are unable to meet the increasing demand for water. Utility operators in such situations resort to rationing the supply as a partial solution to this problem; this, in turn, may lead to disproportionate allocation of water or inequity in supply. In this study, we propose a mixed integer non-linear program formulation and an efficient solution approach to minimize the inequity in supply, subject to hydraulic constraints and additional constraints on hours of supply and valve operation. Further, we show that the schedule can be obtained using a data-driven approach based on flow and level measurements, which eliminates the modelling effort and uncertainty associated with the use of hydraulic models. We demonstrate the proposed approaches through simulations of a real WDN, and experiments conducted on a topologically similar laboratory-scale network.
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新兴经济体中间歇性运行的农村供水网络的公平供应
许多供水管网运营商无法满足日益增长的用水需求。在这种情况下,公用事业运营商采取定量供应作为部分解决这一问题的办法;这反过来又可能导致水分配不成比例或供应不平等。在这项研究中,我们提出了一个混合整数非线性规划公式和一个有效的解决方法,以最小化供应不平等,受液压约束和额外的供应时间和阀门操作约束。此外,我们还表明,可以使用基于流量和液位测量的数据驱动方法来获得时间表,这消除了建模工作和与使用水力模型相关的不确定性。我们通过模拟真实的WDN和在拓扑相似的实验室规模网络上进行的实验来证明所提出的方法。
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