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Simulating the Influence of Buildings on Flood Inundation in Urban Areas

机译:模拟建筑物对市区洪水泛滥的影响

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Two-dimensional hydraulic modeling is fundamental to simulate flood events in urban area. Key factors to reach optimal results are detailed information about domain geometry and utility of hydrodynamic models to integrate the full or simplified Saint Venant equations in complex geometry. However, in some cases, detailed topographic datasets that represent the domain geometry are not available, so approximations—such as diffusive wave equation—is introduced whilst representing urban area with an adjusted roughness coefficient. In the present paper, different methods to represent buildings and approximation of the Saint Venant equations are tested by performing experiments on a scale physical model of urban district in laboratory. Simplified methods are tested for simulation of a real flood event which occurred in 2013 in the city of Olbia, Italy. Results show that accuracy of simulating flow depth with a detailed geometry is comparable to the one achieved with an adjusted roughness coefficient.
机译:二维水力模型是模拟市区洪水事件的基础。达到最佳结果的关键因素是有关领域几何的详细信息以及将完整或简化的Saint Venant方程集成到复杂几何中的流体力学模型的实用性。但是,在某些情况下,无法使用表示域几何形状的详细地形数据集,因此在表示具有调整后的粗糙度系数的城市区域时,引入了近似值(例如扩散波方程)。本文通过在实验室中对市区规模物理模型进行实验,测试了不同的表示建筑物的方法和Saint Venant方程的逼近。测试了简化方法以模拟2013年在意大利奥尔比亚市发生的实际洪灾事件。结果表明,用详细的几何图形模拟流动深度的精度与调整后的粗糙度系数所达到的精度相当。

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