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A Simulation-Based Optimization Model for Flood Management on a Watershed Scale

机译:基于仿真的流域尺度洪水管理优化模型

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摘要

Using structural and nonstructural measures for flood damage reduction is a longstanding problem in water resources planning and management. In the present study, an algorithm is presented for the optimal design of structural and nonstructural flood mitigation measures based on simulation-based optimization approach. For this purpose, the MIKE-11 simulation model, a one-dimensional hydrodynamic model, was used to calculate the potential damages of different flood scenarios under the various combinations of structural and nonstructural measures and this model was coupled with the NSGA-II multi-objective optimization model to provide the optimal Pareto solutions between two conflict objectives of minimizing the investment costs of flood mitigation measures and the potential damages of the floodplain. The proposed model was then applied to a small watershed in central part of Iran as a case study and the optimal trade-off solutions were calculated for different flood scenarios. Using these trade-offs, for each level of funding, decision makers can assign the optimal design of flood mitigation measures considering decision criteria.
机译:在水资源规划和管理中,采用结构性和非结构性措施来减少洪水灾害是一个长期存在的问题。在本研究中,提出了一种基于基于仿真的优化方法的结构和非结构性洪灾缓解措施的优化设计算法。为此,使用MIKE-11模拟模型(一维水动力模型)来计算结构和非结构措施的各种组合下不同洪水情景的潜在破坏,并将该模型与NSGA-II多目标模型结合使用。目标优化模型可在两个冲突目标之间提供最佳的Pareto解决方案,以最大程度地减少防洪措施的投资成本和洪泛区的潜在损失。然后将拟议的模型应用于伊朗中部的一个小流域作为案例研究,并针对不同的洪水场景计算了最佳的权衡解决方案。利用这些权衡,对于每个级别的资金,决策者都可以根据决策标准来分配防洪措施的最佳设计。

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