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首页> 外文期刊>Journal of Hydraulic Engineering >Flood-Induced Hydrodynamic and Debris Impact Forces on Single-Span Masonry Arch Bridge
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Flood-Induced Hydrodynamic and Debris Impact Forces on Single-Span Masonry Arch Bridge

机译:单跨砌体拱桥上的洪水诱导的流体动力学和碎片冲击力

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This paper explores flood-induced hydrodynamic and debris impact forces on masonry arch bridges using the numerical method smoothed particle hydrodynamics (SPH). Masonry arch bridges make up a significant proportion of the bridge stock in many parts of the world, including the UK and US. Although the masonry arch is a durable bridge form, those spanning watercourses can be vulnerable to the effects of flooding. Where fast flood flows impinge on the bridge superstructure, highly transient behavior is observed, which can lead to violent interactions, especially where debris is carried by the flow. This paper investigates flood-induced impact pressures on a typical single-span masonry arch bridge subject to hydrodynamic action and discrete floating debris. Different debris orientations relative to the bridge span are considered. Results revealed that the presence of the debris can lead to impact pressures an order of magnitude greater than the hydrodynamic conditions alone. Furthermore, the influence of debris orientation at impact was significant, with the 90 degrees orientation resulting in higher peak impact pressures with shorter impact duration compared with the 0 degrees.
机译:本文探讨了使用数值方法平滑粒子水动力学(SPH)对砌体拱桥上砌体曲桥的洪水诱导的流体动力和碎片冲击力。砌体拱桥在世界许多地区弥补了大部分桥梁,包括英国和美国。虽然砌体弓是一种耐用的桥梁形式,但那些跨越水道的水道可以容易受到洪水影响的影响。如果快速流动在桥上结构上撞击,则观察到的高瞬态行为,这可能导致剧烈的相互作用,特别是在碎屑被流动携带的地方。本文研究了典型的单跨砌体拱桥对流体动力学作用和离散漂浮碎片的典型单跨砌体拱桥的洪水引起的冲击压力。考虑了相对于桥跨度的不同碎屑方向。结果表明,碎片的存在可能导致冲击压力大小大于单独的流体动力学条件。此外,碎屑取向在撞击时的影响是显着的,90度取向导致较高的峰值冲击压力,与0度相比短的冲击持续时间短。

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