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Numerical simulation in dynamic analysis of deepwater group pile foundation of bridges

机译:桥梁深水群桩基础动力分析的数值模拟

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The influence of fluid-structure interaction on the dynamic characteristics of deepwater group pile foundation is investigated. For this purpose, a three-dimensional solid finite element model simulating the structure and a three-dimensional potential fluid model representing the water were developed using the software ADINA. Four parameters including the water depth, the width of pile cap, the height of pile cap and the superstructure mass were considered to investigate their effects on the fluid-structure interaction. Then possible improvement to the interaction influence by the change to the pile layout and number was examined. It is found that while the fluid-structure interaction due to water depth has significant influence on the dynamic characteristics of group pile foundation, effects due to the structural dimensions should also be included. In addition, the provision of raking piles can reduce the impact that water has on the foundation, but a larger pile cap with additional vertical piles can also produce this effect.
机译:研究了流固耦合对深水群桩基础动力特性的影响。为此,使用ADINA软件开发了一个模拟结构的三维固体有限元模型和一个代表水的三维潜在流体模型。考虑了水深,桩帽宽度,桩帽高度和上部结构质量四个参数,以研究它们对流固耦合的影响。然后研究了通过改变桩的布局和数量来改善相互作用影响的方法。研究发现,虽然水深引起的流固耦合对群桩基础的动力特性有显着影响,但由于结构尺寸的影响也应包括在内。另外,提供耙pile桩可以减少水对地基的影响,但是较大的桩帽和附加的竖桩也可以产生这种效果。

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