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Optimal design of a new water distribution network using a water supply risk assessment

机译:利用供水风险评估对新的供水网络进行优化设计

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This study considered water supply risk (WSR) as well as the cost of a water distribution network (WDN) design, and developed an optimized model of pipe diameters and gate valves within the WDN. Thus, a multipurpose algorithm was used to implement an optimal WDN design that minimizes both WDN establishment costs and the Block WSR. The algorithm adopted was non-dominated sorting genetic algorithm II, which has most frequently been used. The optimal model was applied to Block A2, and the results showed that the Block WSR of each pipe after Prob(PB) was changed to 0.2 (case/km/year) from that of the existing design method. As a result, the Block WSR of the existing network design was 0.306 m(3)/year, but that of the optimal network design was reduced by 10.1% to 0.275 m(3)/year. The construction cost of the existing network design was 139,600,000 won, but that of the optimal network design was reduced by 59.7% to 56,300,000 won. While the construction cost of the network with the optimal design is much lower than that of the network with the existing design, the optimal design method can also reduce the Block WSR; thus, the optimal design model was proven effective. In addition, apart from construction costs, the Block WSR reduction effect due to the optimal design showed that the daily water cut-off of 8.8 persons/year can be prevented by the conversion of 296 L/Lpcd.
机译:这项研究考虑了供水风险(WSR)以及供水网络(WDN)设计的成本,并开发了WDN中的管道直径和闸阀的优化模型。因此,使用了一种多用途算法来实现最佳WDN设计,从而将WDN建立成本和Block WSR最小化。所采用的算法是最常用的非控制排序遗传算法II。将最优模型应用于A2区块,结果表明,将Prob(PB)之后的每条管道的WSR值从现有设计方法更改为0.2(案例/公里/年)。结果,现有网络设计的Block WSR为0.306 m(3)/年,但最佳网络设计的Block WSR降低了10.1%,降至0.275 m(3)/年。现有网络设计的建设成本为1.396亿韩元,但最佳网络设计的建设成本降低了59.7%,为5.630亿韩元。尽管采用最佳设计的网络的建设成本要比采用现有设计的网络的建设成本低得多,但是采用最佳设计方法还可以降低Block WSR;因此,最佳设计模型被证明是有效的。此外,除建筑成本外,由于最佳设计而降低的整体WSR效果表明,通过转换296 L / Lpcd可以防止每天减少8.8人/年的积水量。

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