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A Response Methodology for Reducing Impacts of Failure Events in Water Distribution Networks

机译:减少水分配网络失败事件影响的响应方法

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This paper presents a methodology for developing efficient and effective operational, short time response to a water distribution system (WDS) pipe failure event (e.g. pipe burst). In general, management and response to failures in WDS are performed by isolating the failure, estimating the impacts of isolation on the customers and recovering the affected part of the system by restoring the flows and pressures to normal conditions. The isolation is typically achieved by manipulating the nearby on/off valves whilst a hydraulic simulator (such one used in EPANET2.0) is used for estimating impacts. The recovery, which is the focus of this work, involves selecting a combination of suitable operational interventions from a number of possible choices to bring the water into the isolated area and restore normal flow conditions. The options considered here include valve manipulations, changing the pressure reducing valve's (PRV) outlet pressure and installation and use of a temporary overland bypasses from a nearby hydrant(s). The optimal mix of interventions is identified by using a multi-objective optimization algorithm integrated with the pressure driven hydraulic solver. The optimization is driven by the minimization of the negative impact on the customers and minimization of the corresponding number of operational intervention activities (which acts as a surrogate for operational costs). The above methodology has been applied to a real world water distribution network of C-Town. The results obtained demonstrate the effectiveness of the proposed methodology in identifying the Pareto optimal intervention strategies that could be ultimately presented to the control room operator for making a suitable decision.
机译:本文介绍了一种用于开发有效且有效的运行,对水分配系统(WDS)管道故障事件(例如管道爆发)的响应的方法。一般来说,通过隔离失败,估计客户对客户对客户的影响并通过将流量和压力恢复到正常情况来恢复系统的受影响部分的影响来进行管理和响应WDS中的失败。通常通过操纵附近的开/关阀(在EPANET2.0中使用)的液压模拟器(这种用于EPANET2.0)进行估计的影响来实现隔离。作为这项工作的重点,恢复涉及从许多可能的选择中选择合适的操作干预的组合,使水进入隔离区域并恢复正常流动条件。这里考虑的选项包括阀门操纵,改变减压阀(PRV)出口压力和安装以及使用附近消防栓的临时陆地绕过。通过使用与压力驱动的液压求解器集成的多目标优化算法来识别干预措施的最佳混合。优化由最小化对客户的负面影响以及相应的运营干预活动的最小化(其作为运营成本的代理人)的最小化。上述方法已经应用于C-Town的真实世界水分配网络。所获得的结果证明了提出的方法在识别帕累托最佳干预策略方面的有效性,这些方法最终可能最终呈现给控制室运营商以制定合适的决定。

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