Vertical and horizontal dynamic response of suction caisson foundations

IF 0.7 Q4 MECHANICS
Soumia Bouneguet, S. Messioud, D. Dias
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引用次数: 0

Abstract

Abstract In this article, the dynamic response of suction caisson foundations is studied using a three-dimensional finite element model with an absorbing boundary. The adopted formulation is based on the substructuring method. This formulation has been applied to analyze the effect of soil–structure interaction on the dynamic response of the suction foundation as a function of the kind of load. The suction caisson foundations are embedded in viscoelastic homogenous soils and subjected to external harmonic forces. For each frequency, the dynamic impedance connects the applied forces to the resulting displacement. The constitutive elements of the system are modeled using the finite element volumes and shell elements. The numerical results for the dynamic response of the suction foundations are presented in terms of vertical and horizontal displacements as well as vertical and horizontal dynamic impedances. The results indicated that the overall dynamic response is highly affected by the suction caisson diameter, the soil stiffness variation, and the suction caisson length.
吸力沉箱基础的竖向和水平动力响应
摘要本文采用带吸收边界的三维有限元模型研究了沉井基础的动力响应。所采用的公式是基于子结构方法。该公式已用于分析土-结构相互作用对吸力基础动力响应的影响,作为荷载类型的函数。吸力沉箱基础嵌入粘弹性均质土壤中,并受到外部谐波力的作用。对于每个频率,动态阻抗将施加的力与产生的位移连接起来。使用有限元体积和壳单元对系统的本构单元进行建模。根据垂直和水平位移以及垂直和水平动态阻抗,给出了吸力基础动力响应的数值结果。结果表明,沉井直径、土体刚度变化和沉井长度对整体动力响应有很大影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.30
自引率
16.70%
发文量
20
审稿时长
16 weeks
期刊介绍: An international journal ‘Studia Geotechnica et Mechanica’ covers new developments in the broad areas of geomechanics as well as structural mechanics. The journal welcomes contributions dealing with original theoretical, numerical as well as experimental work. The following topics are of special interest: Constitutive relations for geomaterials (soils, rocks, concrete, etc.) Modeling of mechanical behaviour of heterogeneous materials at different scales Analysis of coupled thermo-hydro-chemo-mechanical problems Modeling of instabilities and localized deformation Experimental investigations of material properties at different scales Numerical algorithms: formulation and performance Application of numerical techniques to analysis of problems involving foundations, underground structures, slopes and embankment Risk and reliability analysis Analysis of concrete and masonry structures Modeling of case histories
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