首页> 外文会议>Intelligent Systems, Modelling and Simulation (ISMS), 2012 Third International Conference on >A Study on Modeling and Simulation of Water Distribution Systems Based on Loop Corrective Flows and Containing Controlling Hydraulics Elements
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A Study on Modeling and Simulation of Water Distribution Systems Based on Loop Corrective Flows and Containing Controlling Hydraulics Elements

机译:基于回路修正流并包含控制液压元件的配水系统建模与仿真研究

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In the context of water networks, in order to supply water to consumers without any disruption in service, the state of the system has to be monitored. One way to achieve this is by using simulators algorithms that provide means of combining the water consumptions called also pseudo-measurements by relating them to the mathematical model of the system. Therefore a comprehensive description of the water distribution system should be used to attain a true picture of the state of the system. This implies that all hydraulics elements including non-linear controlling elements such as pumps and valves should be included in the description of the water distribution system. This paper addresses the problem of simulation of water networks containing controlling hydraulics elements by using simulator algorithms constructed with the loop corrective flows equations. It is well known that these controlling hydraulics elements may cause numerical difficulties in the simulations due to their discontinuous properties. It is shown that using the loop equations can provide an adequate mean for handling the discontinuous nature of the controlling hydraulics elements. This is in spite of having to deal with the loop structure of the water network in the simulator algorithm which implies the use of graph theory. The case of non-linear elements check valves, pumps and pressure reducing valves is presented. The main contribution of the paper is that it proposes a partial rebuilding of the spanning tree obtained with the Depth First (DF) search, which partial rebuilding results from the changing of the status of the non-linear controlling hydraulics elements during the convergence of the Newton-Raphson numerical optimization method used by the simulator algorithm. The numerical results are verified with the EPANET software which is an established computer program used in the simulation of water networks.
机译:在供水网络中,为了在不中断服务的情况下向消费者供水,必须监控系统状态。一种实现此目的的方法是使用模拟器算法,该算法提供了将水消耗与系统的数学模型相关联来组合被称为伪测量的耗水量的方法。因此,应该使用配水系统的全面描述来获得系统状态的真实图片。这意味着在水分配系统的描述中应包括所有液压元件,包括非线性控制元件,如泵和阀。本文通过使用由回路校正流量方程构建的模拟器算法解决了包含控制水力元件的水网模拟问题。众所周知,这些控制液压元件由于其不连续特性而可能在模拟中引起数值困难。结果表明,使用回路方程可以为处理液压元件的不连续性提供足够的平均值。尽管必须在模拟器算法中处理水网的回路结构,但这暗示了图论的使用。介绍了非线性元件单向阀,泵和减压阀的情况。本文的主要贡献在于,它提出了对通过深度优先(DF)搜索获得的生成树的部分重建,该重建是由非线性控制液压元件的状态变化引起的。牛顿-拉夫森数值优化方法所使用的模拟器算法。数值结果通过EPANET软件进行了验证,该软件是用于水网络模拟的已建立计算机程序。

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