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Advanced Geometrical Analysis of Water Distribution Networks (WDNs): A Comparison between Standard and Minimum Capital-Cost Designs

机译:水分配网络的高级几何分析(WDNS):标准和最低资本成本设计的比较

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Different researchers have comprehensively addressed the water distribution network (WDN) optimization design problem in the past years. However, in the analysis of the optimized WDN, the relationship between the geometric parameters of the network and the hydraulic parameters obtained from the optimal design has been set aside. In this research, a robust geometric analysis of optimal WDN designs by pipe cost minimization is made in order to provide a response to the possible relationships between the geometry of the network and its optimized design. In addition, geometrical analysis is performed understanding that water distribution infrastructure, represented as a spatially organized graph, is a complex network of interconnected vertices (nodes) and edges (pipes) that belong to the emerging topic of complex network theory (CNT). Therefore, CNT metrics along with other geometric aspects (e.g., pipe diameter, pipe length, fractality, branch index, among others) of the network are measured for analyzing features of the physical domain where hydraulics and optimization occurs. As a result, it was determined how the effectiveness and efficiency of optimization methodologies are affected depending on the network topology.
机译:不同的研究人员在过去几年中全面解决了水分配网络(WDN)优化设计问题。然而,在对优化WDN的分析中,留出了网络的几何参数与从最佳设计中获得的液压参数之间的关系。在该研究中,通过管成本最小化进行最佳WDN设计的鲁棒几何分析,以便对网络的几何形状与其优化设计提供响应。此外,已经了解了几何分析,理解,作为空间组织的图形的水分配基础设施是属于复杂网络理论(CNT)的新兴课题的互连顶点(节点)和边缘(管道)的复杂网络。因此,测量CNT指标以及网络的其他几何方面(例如,管径,管道长度,断裂,分支指数等),用于分析液压和优化的物理领域的特征。结果,确定如何根据网络拓扑影响优化方法的有效性和效率。

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