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The Dynamic Response of Gravity Type Quay Wall During Earthquake Including Soil-Sea-Structure Interaction

机译:地震作用下重力式码头墙的动力响应包括土-海-结构相互作用

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The dynamic response of gravity type quay wall during earthquake including soil-sea-structure interaction is calculated using ADINA finite element techniques. The main objective of this study is to investigate the effects of fluid-structure interaction on the residual displacement of wall after a real earthquake. A direct symmetric coupled formulation based on the fluid velocity potential is used to calculate the nonlinear hydrodynamic pressure of sea water acting on the wall. The doubly asymptotic approximation (DAA) is used to account for the effects of outer fluid on the inner region. The non-associated Mohr-Coulomb material behavior is applied to model the failure of soil. The full nonlinear effective stress analysis is performed in this study and the soil-pore fluid interaction effects are modeled using porous media formulation. Viscous boundary condition is implemented to model the artificial boundary in direct method analysis of soil-structure interaction system and sliding contact condition was modeled in the interface of wall and surrounding soil. A typical configuration of gravity quay wall is used for analysis and three real earthquakes excitation are applied as base acceleration. The results show that influence of fluid-structure interaction effects on the permanent displacement of a gravity quay wall constructed on relatively non-liquefiable site is not considerable.
机译:利用ADINA有限元技术计算了地震作用下重力型码头墙的动力响应,包括土海结构的相互作用。本研究的主要目的是研究真实地震后流固耦合对墙体残余位移的影响。基于流体速度势的直接对称耦合公式用于计算作用在壁上的海水的非线性流体动力压力。双渐近逼近(DAA)用于说明外部流体对内部区域的影响。非关联的Mohr-Coulomb物质行为被用于模拟土壤破坏。在这项研究中进行了完全非线性有效应力分析,并使用多孔介质配方对土壤-孔隙流体的相互作用进行了建模。在土-结构相互作用系统的直接方法分析中,采用粘性边界条件对人工边界进行建模,并在墙体与周围土壤的界面中对滑动接触条件进行建模。使用重力码头墙的典型配置进行分析,并将三个真实地震激励用作基础加速度。结果表明,流固耦合作用对在相对不可液化场所建造的重力码头墙的永久位移的影响不大。

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