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Improvement on Structural Forms of Pile Group Foundations of Deepwater Bridges

机译:深水桥梁桩基基础结构形式的改进

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摘要

As long-span cross-sea bridges extend to deeper sea areas, the bridge pile tends to increase in its slenderness ratio and becomes more susceptible to waves. To improve the structural stability at the construction stage, this study analyses wave-induced response of foundations. The wave theory and the method used for computing wave forces on foundations are first introduced. Then, a pile group foundation is taken as the research object, and different pile lengths ranging from 16?m to 46?m are considered. The wave-induced response of the piles and the cap is calculated. After understanding the effect of the pile length, three optimized foundations are proposed with the aim of reducing the free length of the pile, and the corresponding finite element models are established to compare their wave-induced response. The results show that the displacement at the top of the foundation increases with the increase in the pile length until the cap partly emerges from water and so does the internal force at the bottom. Setting a constraint in the middle of the piles can reduce their free lengths and is favourable to the wave-induced response of the foundation except for the shearing force. A stronger constraint shows better effects on improvement of the stability of the foundation. The conclusions provide reference for optimization on pile foundations of deepwater bridges.
机译:由于长跨度跨海桥延伸到更深的海域,桥梁桩往往会增加其细长比率,并且变得更容易受到波浪。为了提高施工阶段的结构稳定性,本研究分析了基础的波动响应。首先引入了波动的波理论和用于计算波力的方法。然后,将桩基基础作为研究对象,不同的桩长度范围为16Ωm至46Ωm。计算桩和帽的波引起的响应。在理解桩长的效果之后,提出了三种优化的基础,其目的是减少桩的自由长度,并且建立了相应的有限元模型以比较它们的波引起的响应。结果表明,基础顶部的位移随着桩长的增加而增加,直到盖子部分从水中出现,因此底部的内部力也是如此。在桩的中间设定约束可以减少自由长度,并且有利于除剪切力之外的基础的波动响应。一个强大的约束表现出更好地改善基础稳定性的效果。该结论为深水桥梁桩基础提供了参考。

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