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Hydrodynamic and Debris-Damming Failure of Bridge Decks and Piers in Steady Flow

机译:稳定流动中桥面和桥墩的水动力和碎屑破坏

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In countries with steep rivers, such as Japan and the United States, bridges fail on an annual basis. Bridges on spread footings are especially susceptible to failure by hydrodynamic loading, often exacerbated by debris damming. Here, such failures are investigated via small scale model laboratory experiments and full scale numerical simulations. In the laboratory, lift and drag forces and overturning moment on bridge decks, piers, and deck-pier systems, are measured and compared with threshold of failure criteria used in design guidelines. Effects of debris on lift, drag, and moment, as well as three-dimensional effects, are quantified. Via numerical simulations, flow patterns and free surface behaviour responsible for these forces are investigated, and described in a framework as a function of the water depth, flow speed, deck clearance, and girder height. Results show that current guidelines are non-conservative in some cases. Importantly, failure of both decks and piers can be prevented by strengthening pier-deck connections, or by streamlining decks.
机译:在河流陡峭的国家,例如日本和美国,桥梁每年倒塌。分散基础上的桥梁特别容易受到水力荷载的破坏,而水力荷载通常会因杂物筑坝而加剧。在这里,通过小规模的模型实验室实验和全面的数值模拟研究了此类故障。在实验室中,测量桥面板,桥墩和桥墩系统上的举升和拖动力以及倾覆力矩,并将其与设计准则中使用的破坏标准进行比较。定量分析了碎片对升力,阻力和力矩的影响以及三维效果。通过数值模拟,研究了引起这些力的流型和自由表面行为,并在框架中将其描述为水深,流速,甲板净空和箱梁高度的函数。结果表明,当前的指南在某些情况下是非保守的。重要的是,可以通过加强墩台连接或简化甲板来防止甲板和墩的破坏。

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