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首页> 外文期刊>Acta Polytechnica >Detailed Numerical Modeling of Flood Flow in Floodplains with Complex Geometry
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Detailed Numerical Modeling of Flood Flow in Floodplains with Complex Geometry

机译:复杂几何形状的洪泛区洪水流的详细数值建模

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Numerical modeling of flood flow and the evaluation of fload hazards can be based on various numerical models and modeling techniques. One-dimensional (1D), quasi two-dimensional (1,5 D), two-dimensional (2D) or three-dimensional (3D) variants of numerical models can be used. While 3D models are too demanding to be used for flood flow modeling on personal computers, quasi-2D and 2D models can be more widely used to solve even larger practical problems nowadays. Detailed two-dimensional numerical modeling of flood flow in flooded urbanized areas with complex geometry using the 2D depth averaged model is presented in this paper. The governing equations of the model are expressed with a set of depth averaged Reynolds equations consisting of the continuity equation and two momentum equations for the horizontal velocity components. The eddy viscosity, which influences the horizontal turbulent momentum exchange processes, is modeled with the aid of a depth average version of the two-equation k-ε turbulence model. The partial differential equations are solved numerically with a control volume method using fine non-orthogonal curvilinear grids and a non-staggered variable arrangement. The applicability and advantages of this modeling approach for simulating the flood flow in floodplains with complex geometry, and in urban areas, are illustrated by the results of a pilot study in Chocen and Usti nad Orlici, towns which were severely affected during the 1997 and 1998 floods in the Czech Republic.
机译:洪水流量的数值建模和负荷风险的评估可以基于各种数值模型和建模技术。可以使用数值模型的一维(1D),准二维(1.5D),二维(2D)或三维(3D)变体。尽管3D模型的要求太高,无法用于个人计算机上的洪水流建模,但是准2D和2D模型可以更广泛地用于解决当今更大的实际问题。本文利用二维深度平均模型,对复杂几何形状的城市淹没区洪水流量进行了详细的二维数值模拟。该模型的控制方程由一组深度平均的雷诺方程表示,该方程由连续性方程和两个水平速度分量的动量方程组成。影响涡旋粘度的因素是水平湍流动量交换过程,它是通过两方程式k-ε湍流模型的深度平均形式建模的。使用精细的非正交曲线网格和非交错变量布置,通过控制体积法对偏微分方程进行数值求解。 1997年和1998年受严重影响的城镇Chocen和Usti nad Orlici的试点研究结果证明了这种建模方法在模拟复杂几何形状的洪泛区和城市地区的洪水流量中的适用性和优势。捷克共和国发生洪水。

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