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Optimal Positioning and Sizing of Detention Tanks within Urban Drainage Networks

机译:城市排水管网中储水罐的最佳位置和尺寸

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摘要

The present work describes a procedure for the evaluation of the optimal number, position, configuration, and sizes of detention tanks in urban drainage networks, to decrease the maximum flow depths and velocities for an assigned return period and to comply with the local design requirements. Each candidate solution of the optimization problem is evaluated by means of a semidistributed hydrological model in which the kinematic wave is used as flood routing model, whereas the variational approach is used to evaluate the critical flow characteristics corresponding to a given return period. The procedure, which makes use of a genetic algorithm to search for the optimal solution among the candidates, is applied to a case study drainage network, considering superpipe-based detention tanks as detention systems. The results indicate that these tanks are effective in the rehabilitation of the drainage network and that the cost of this intervention is substantially lower than that corresponding to the upgrading of existing pipes.
机译:本工作描述了一种程序,用于评估城市排水管网中最佳数量,位置,配置和尺寸的储水罐,以减少指定返水期的最大水深和流速,并符合当地的设计要求。优化问题的每个候选解决方案都通过半分布式水文模型进行评估,在该模型中,运动波用作洪水泛洪模型,而变分法则用于评估与给定返回周期相对应的临界水流特征。该程序利用遗传算法在候选人中寻找最佳解决方案,该程序被应用于案例研究排水网络,其中考虑了基于超级管道的拘留罐作为拘留系统。结果表明,这些水箱对于排水网络的修复是有效的,并且这种干预的成本大大低于对应于现有管道升级的成本。

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