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Optimizing stormwater low-impact development strategies in an urban watershed considering sensitivity and uncertainty

机译:考虑敏感性和不确定性,优化城市流域中的雨水低影响策略

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Stormwater management in an urban environment is beset by uncertainties about future development. Dynamic strategies must be devised to cope with such uncertain environment. This work proposes a simulation-optimization model that minimizes the costs of low-impact development (LID) measures for mitigating impacts of future urban development on runoff. This paper's methodology is tested in an urban watershed in Tehran, Iran, relying on the stormwater management model (SWMM) coupled with the genetic algorithm (GA) to function as a simulation-optimization method for urban-runoff control by means of LID stormwater control measures. A sensitivity analysis of the calculated optimal solution revealed the impacts the most sensitive LIDs would have on runoff considering a set of plausible future development scenarios in the urban catchment. A comparison of the results from two different scenarios of future development with the existing stormwater system's performance shows the cost increase in redesigning the existing system to make it LID sensitive would equal 20% of the existing system's cost. The additional cost of redesigning the existing system without LID features would be 45% of the existing system's cost. These results demonstrate the importance of assessing the sensitivity of designed units in a stormwater management system and studying the trade-offs between possible decisions and future uncertainties concerning development in the watershed.
机译:在城市环境中的雨水管理是通过关于未来发展的不确定性的困扰。必须设计动态策略来应对这种不确定的环境。这项工作提出了一种仿真优化模型,最大限度地减少了降低利用开发(盖子)措施的成本,以减轻未来城市发展对径流的影响。本文的方法在伊朗的德黑兰城市流域中进行了测试,依靠雨水管理模型(SWMM),与遗传算法(GA)相结合,以通过盖雨水控制作为城市径流控制的仿真优化方法措施。计算出的最佳解决方案的灵敏度分析显示,在城市集水区中考虑一系列合理的未来发展情景,对最敏感的盖子的影响是对径流的影响。与现有的雨水系统的业绩的两个不同情景的结果比较了现有的雨水系统的性能,表明了重新设计现有系统的成本增加,使其升高敏感性将平均现有系统成本的20%。重新设计现有系统的额外成本,没有盖子功能将是现有系统成本的45%。这些结果表明,评估了雨水管理系统中设计单元的敏感性,并在分水岭的可能决策和未来不确定性之间研究权衡的重要性。

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