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首页> 外文期刊>Journal of hydro-environment research >Optimal design of interception for flood control: An integrated simulation approach
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Optimal design of interception for flood control: An integrated simulation approach

机译:防洪拦截的优化设计:一种集成的仿真方法

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摘要

This study develops a computational framework that integrates a flood simulation model, a response surface method, and an optimization technique for an optimal flood control design. The objective function was the minimization of the difference between simulated flooding depths and pre-specified allowable flooding depths, with simulated flooding depths constrained to less than allowable flooding depths in the control regions. The design variables were the design capacities of hydraulic structures. The flood simulation model was based on two-dimensional shallow water flow equations for open channel flow, rainfall, overland flow flooding, and river interactions. The response surface method was combined with the central composite design method to construct approximate functions for the objective and the constraint functions in terms of the design variables. Sequential quadratic programming was used to obtain the optimal design variables with the minimum value of the approximated objective function. Actual flood data from Typhoon Morakot for the Linbian River was used to verify the flood simulation model. The integrated computational framework was then used to calculate the optimal upstream interception strengths for controlling downstream flooding under hydrologic conditions associated with a 100-year return period storm. Numerical examples demonstrated that the proposed computational framework can efficiently provide optimal designs for practical flood control problems.
机译:这项研究开发了一个计算框架,该框架集成了洪水模拟模型,响应面方法和用于最佳洪水控制设计的优化技术。目标函数是最小化模拟洪水深度与预先指定的允许洪水深度之间的差异,同时将模拟洪水深度限制在控制区域内小于允许洪水深度。设计变量是水工结构的设计能力。洪水模拟模型基于二维浅水流动方程,用于明渠水流,降雨,陆上洪水和河流相互作用。响应面法与中央复合设计法相结合,以目标变量和约束函数为设计变量,构造近似函数。顺序二次编程用于获得具有近似目标函数最小值的最佳设计变量。台风莫拉克台风对临边河的实际洪水数据被用来验证洪水模拟模型。然后,使用综合计算框架来计算最佳的上游拦截强度,以在与100年回归期暴风雨有关的水文条件下控制下游洪水。数值算例表明,所提出的计算框架可以为实际的防洪问题提供有效的优化设计。

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