Hydraulic modeling approach for evaluating the performance of flow-starved water transmission networks

A. Sinha, A. Ghorpade, O. Damani, P. Kalbar
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引用次数: 1

Abstract

The planning and design of water networks in water supply systems are primarily based on demand-driven modeling. The prevailing design provisions, such as minimum diameter, lead to oversizing of the water network, affecting operation. In upstream balancing reservoirs, outflow due to the water transmission network's excessive withdrawal capacity surpasses the available inflow causing flow starvation under intermittent water supply. This flow starvation causes partial flow in the downstream vicinity and forms a standing water column in the balancing reservoir's immediate downstream pipe. Traditional modeling approaches cannot simulate the piped network performance under this phenomenon due to their inability to model partial flow. Hence, a novel modeling approach is developed using a tank with an irregular cross-section, which integrates the hydraulic performance of the tank and the downstream pipe. Additionally, a reservoir and control valve represent the water withdrawal mechanism at the downstream reservoir. The proposed modeling approach simulates performance of a flow-starved water transmission network. A case study based on a real network is used to illustrate the robustness of the proposed approach. The developed modeling approach can serve as a management tool to devise operation schedules, helping better manage the operations of the water networks.
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缺水输水管网性能评价的水力建模方法
供水系统中水网的规划和设计主要基于需求驱动模型。现行的设计规定,如最小直径,导致水网过大,影响运行。在上游平衡水库中,由于输水网引水量过大导致的出水量超过了可入水量,导致间歇性供水下的缺流。这种缺流导致下游附近的局部流动,并在平衡水库的直接下游管道中形成静水柱。传统的建模方法由于无法对局部流动进行建模,无法模拟这种现象下的管网性能。因此,本文提出了一种采用不规则截面水箱的新型建模方法,该方法综合了水箱和下游管道的水力性能。此外,储层和控制阀代表下游储层的取水机制。所提出的建模方法模拟了缺乏流量的输水网络的性能。以一个真实网络为例,说明了该方法的鲁棒性。所开发的建模方法可以作为设计运行计划的管理工具,帮助更好地管理供水网络的运行。
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