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Operating Modes and Connectivity Matrices for Water Distribution Systems

机译:供水系统的操作模式和连接矩阵

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An alternative transport layer for water quality models is described which relies on actual flow data obtained from a real-time SCADA system. Two of the central concepts of the new transport layer are operating modes and the connectivity matrix. An operating mode is defined as a pattern of flows in which all links in the network are assigned a flow direction. Criteria for determining the feasibility of operating modes are incorporated in a search algorithm that finds all the feasible operating modes for a network without recourse to full enumeration. The algorithm is able to make inferences in flow directions in links that have not been established directly from the SCADA data. The connectivity matrix summarizes the combined effects of these feasible operating modes. The resulting connectivity matrix can be used to determine potential sources and the dispersal of water quality constituents as demonstrated in an example. Finally, the impacts of the proposed SCADA-driven transport model on the selection (design) of network geometry, the placement of valves, and placement of monitoring equipment are discussed briefly.
机译:描述了一种水质模型的替代传输层,该层依赖于从实时SCADA系统获得的实际流量数据。新传输层的两个中心概念是操作模式和连接矩阵。一种工作模式定义为一种流模式,其中为网络中的所有链路分配了流方向。确定操作模式可行性的标准被并入搜索算法中,该算法无需使用完整枚举就可以找到网络的所有可行操作模式。该算法能够在尚未直接根据SCADA数据建立的链接中沿流向进行推断。连接矩阵总结了这些可行操作模式的综合效果。如示例所示,所得的连通性矩阵可用于确定潜在来源和水质成分的扩散。最后,简要讨论了所提出的SCADA驱动的运输模型对网络几何形状的选择(设计),阀门的布置以及监控设备的布置的影响。

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