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Multi-Objective Design Optimization of Branched Pipeline Systems: Analytical Probabilistic Assessment of Fire Flow Failure

机译:分支管道系统的多目标设计优化:火流故障的分析概率评估

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This paper develops a multi-objective optimization approach that incorporates the probability of fire flow failure in branched water distribution networks. An analytical probabilistic model is developed to quantify the probability of fire flow failure in branched networks and incorporated into the non-dominated sorting genetic algorithm (NSGA-II). The optimization approach seeks to minimize two conflicting objectives: capital cost and the probability of fire flow failure. Capital cost and fire flow failure probability are balanced through the selection of the pipe diameters and the number of pumps in the system. The probability of hydraulic failure under fire flow conditions is solved analytically in a branched network. The non-dominated sorting genetic algorithm is used to produce a set of Pareto-optimal solutions in the objective space of pipe and pump cost and fire flow failure probability.
机译:本文开发了一种多目标优化方法,该方法结合了分支供水网络中火灾失灵的可能性。开发了一种分析概率模型来量化分支网络中火灾失败的可能性,并将其纳入非主导的排序遗传算法(NSGA-II)。优化方法试图将两个相互矛盾的目标减到最少:资本成本和火灾发生故障的可能性。通过选择管道直径和系统中的泵数量,可以平衡资本成本和火灾失败的可能性。在分支网络中解析地解决了火灾条件下水力故障的可能性。非支配排序遗传算法用于在管道和泵的成本和火灾流失概率的目标空间中产生一组帕累托最优解。

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