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首页> 外文期刊>Journal of Water Resources Planning and Management >Locating Inadvertently Partially Closed Valves in Water Distribution Systems
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Locating Inadvertently Partially Closed Valves in Water Distribution Systems

机译:在给水系统中定位无意中的部分关闭的阀门

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摘要

The reliability of a water distribution system is highly dependent on the management of its pipeline network. A pipe or a portion of the network can be isolated for inspection, maintenance, and replacement by the installation of isolation valves along the pipelines. However, the presence of isolation valves may cause a large discrepancy in the hydraulic behavior between the real system and results from a simulation model if the statuses of some of the valves in the system are unknown. Possible problems related to these valves are missing valves in the model due to poor or nonexistent documentation, errors in data transfer, or valve mechanical failure. This paper introduces an innovative methodology for the identification of unknown partially/fully closed valves in a water distribution network. An optimization problem is formulated for the unknown valve issue and solved by application of three sequentially applied methods, which include a local sensitivity analysis, an application of genetic algorithms (GAs), and an application of the Levenberg-Marquardt algorithm. In the first method, the sensitivity of the flow rates and nodal heads at measurement locations with respect to the change in the minor losses of the valves is computed. This computation is used to identify the valves that are unable to be localized by the measurement data. The second method applies a genetic algorithm combined with an extended period simulation in order to preliminarily identify the locations of the partially/fully closed valves and their setting values, i.e.,the degree of opening of the valve. Finally, the application of the Levenberg-Marquardt (LM) algorithm was implemented to correct the results from the GA model. Results and discussions from two case studies show that the proposed methodologies can solve real-world problems.
机译:供水系统的可靠性高度依赖于其管网的管理。可以通过沿管道安装隔离阀来隔离管道或网络的一部分,以进行检查,维护和更换。但是,如果系统中某些阀门的状态未知,那么隔离阀的存在可能会导致实际系统之间的液压性能差异很大,并且仿真模型的结果也是如此。与这些阀有关的可能问题是由于文档不佳或不存在,数据传输错误或阀机械故障而导致模型中的阀丢失。本文介绍了一种用于识别供水网络中未知的部分/完全关闭的阀门的创新方法。针对未知阀门问题提出了优化问题,并通过应用三种顺序应用的方法来解决,包括局部敏感性分析,遗传算法(GA)和Levenberg-Marquardt算法的应用。在第一种方法中,计算出测量位置处的流量和节头相对于阀的微小损失的变化的灵敏度。该计算用于识别测量数据无法定位的阀门。第二种方法是将遗传算法与延长的时间模拟相结合,以便初步识别部分/完全关闭的阀门的位置及其设置值,即阀门的打开程度。最后,应用Levenberg-Marquardt(LM)算法来校正GA模型的结果。两个案例研究的结果和讨论表明,所提出的方法可以解决实际问题。

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