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Computational Fluid Dynamics simulations to predict wind-induced damage to a steel building during Hurricane Katrina

机译:计算流体动力学模拟,以预测在卡特里娜飓风中风对钢结构建筑物的破坏

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A low-rise, sloped-roof, steel storage building located on a canal between downtown New Orleans and Lake Pontchartrain experienced wall failures at two corners during Hurricane Katrina. At both locations the walls were blown outward. The insurance company asserted that the damage was caused by water, and not wind, and denied the claim. A modeling study was undertaken to investigate whether the strong winds could explain the damage. Because wind observations were not available at the height of the storm, the mesoscale meteorological model MM5 was used to estimate wind directions and peak wind speeds at the building. The Computational Fluid Dynamics (CFD) model FLUENT was applied to simulate wind fields and pressure forces on the storage building. The only two areas on the building walls with predicted strong outward pressures coincided exactly with the two areas of blowout damage. Calculations from structural engineers confirmed that these wind-induced pressure forces would have been sufficient to cause the observed damage. The study demonstrated the usefulness of CFD modeling in reproducing wind damage to structures during strong wind conditions.
机译:卡特里娜飓风期间,位于新奥尔良市区和庞恰特雷恩湖之间的一条运河上的一栋低层倾斜屋顶钢制储藏建筑在两个拐角处发生墙体破坏。在这两个位置,墙壁都是向外吹的。保险公司断言,损坏是由水而不是风造成的,因此驳回了索赔。进行了建模研究,以调查强风是否可以解释这种破坏。由于在暴风雨高峰时无法获得风的观测资料,因此使用中尺度气象模型MM5估算建筑物的风向和峰值风速。计算流体动力学(CFD)模型FLUENT用于模拟存储建筑物上的风场和压力。建筑物墙壁上仅有的两个具有强烈向外压力的区域恰好与井喷损坏的两个区域重合。结构工程师的计算结果证实,这些风压力足以造成所观察到的损坏。这项研究证明了CFD模型在重现强风条件下对结构的风损害方面的有用性。

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