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首页> 外文期刊>Computational Methods in Civil Engineering >A case study of flood dynamic wave simulation in natural waterways using numerical solution of unsteady flows
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A case study of flood dynamic wave simulation in natural waterways using numerical solution of unsteady flows

机译:非恒定流数值解在天然水道洪水动态波模拟中的案例研究。

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摘要

Flood routing has many applications in engineering projects and helps designers in understanding the flood flow characteristics in river flows. Floods are taken unsteady flows that vary by time and location. Equations governing unsteady flows in waterways are continuity and momentum equations which in case of one-dimensional flow the Saint-Venant hypothesis is considered. Dynamic wave model as one of the flood routing methods is used for flooding operations because of its high accuracy. Finding the best numerical methods is the main challenge for optimal modeling of dynamic waves and predicting the flood behavior. In this study, a 78-km reach of Ghare-Aghaj River (between two hydrometric stations) is investigated and in addition to the unsteady flow equations (nonlinear Hyperbolic partial differential equations), Preissman implicit scheme and Mac Cormak explicit scheme which are both based on the finite difference numerical methods have been used. Developed models have also been compared with one of the most reliable Mike series computer program. It is aimed to find the most suitable finite difference scheme by comparing the results of two above schemes with the results of Mike 11 program. The results confirmed the superiority of Preissmann implicit scheme in predicting flood wave characteristics for the studied area.
机译:洪水路线在工程项目中有许多应用,可帮助设计人员了解河流中的洪水流量特性。洪水是随时间和位置而变化的不稳定流量。控制水道中非定常流动的方程是连续性和动量方程,在一维流动的情况下,应考虑Saint-Venant假设。动态波模型作为洪水泛洪的一种方法,由于其精度高而被用于洪水泛滥。寻找最佳数值方法是动态波的最佳建模和预测洪水行为的主要挑战。在这项研究中,研究了Ghare-Aghaj河(两个水文测量站之间)的一段78公里的河段,除了基于非定常流动方程(非线性双曲偏微分方程),Preissman隐式格式和Mac Cormak显式格式之外,关于有限差分,已经使用了数值方法。已将开发的模型与最可靠的Mike系列计算机程序之一进行了比较。目的是通过将上述两个方案的结果与Mike 11程序的结果进行比较,找到最合适的有限差分方案。结果证实了Preissmann隐式方案在预测研究区域洪水波特征方面的优势。

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