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Implementation of pressure reduction valves in a dynamic water distribution numerical model to control the inequality in water supply

机译:在动态水分配数值模型中实现减压阀以控制供水不平等

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摘要

The analysis of water distribution networks has to take into account the variability of users' water demand and the variability of network boundary conditions. In complex systems, e.g. those characterized by the presence of local private tanks and intermittent distribution, this variability suggests the use of dynamic models that are able to evaluate the rapid variability of pressures and flows in the network. The dynamic behavior of the network also affects the performance of valves that are used for controlling the network. Pressure reduction valves (PRVs) are used for controlling pressure and reducing leakages. Highly variable demands can produce significant fluctuation of the PRV set point, causing related transient phenomena that propagate through the network and may result in water quality problems, unequal distribution of resources among users, and premature wear of the pipe infrastructure. A model was developed in previous studies and an additional module for pressure control was implemented able to analyze PRVs in a fully dynamic numerical framework. The model was demonstrated to be robust and reliable in the implementation of pressure management areas in the network. The model was applied to a district of the Palermo network (Italy). The district was monitored and pressure as well as flow data were available for model calibration.
机译:配水管网的分析必须考虑用户用水需求的可变性和网络边界条件的可变性。在复杂的系统中,例如那些以当地私人储罐的存在和间歇性分布为特征的模型,这种可变性建议使用能够评估网络中压力和流量的快速可变性的动态模型。网络的动态行为也会影响用于控制网络的阀门的性能。减压阀(PRV)用于控制压力和减少泄漏。高度可变的需求可能会导致PRV设定点的大幅波动,从而导致相关的瞬态现象通过网络传播,并可能导致水质问题,用户之间资源分配不均以及管道基础设施过早磨损。在先前的研究中开发了一个模型,并实施了压力控制的附加模块,能够在完全动态的数值框架中分析PRV。该模型在网络中压力管理区域的实施中被证明是可靠且可靠的。该模型已应用于巴勒莫网络(意大利)的一个地区。对该区域进行了监视,压力和流量数据可用于模型校准。

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