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首页> 外文期刊>Bulletin of earthquake engineering >A BEM-FEM model for the dynamic analysis of building structures founded on viscoelastic or poroelastic soils
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A BEM-FEM model for the dynamic analysis of building structures founded on viscoelastic or poroelastic soils

机译:基于粘弹性或多孔弹性土壤的建筑结构动力分析的BEM-FEM模型

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This paper presents a time-harmonic boundary element-finite element three-dimensional model for the dynamic analysis of building structures founded on viscoelastic or poroelastic soils. The building foundation and soil domains are modelled as homogeneous, isotropic, viscoelastic or poroelastic media using boundary elements. The foundation can also be modelled as a perfectly rigid body coupled to soil and structure. The buildings are modelled using Timoshenko beam finite elements that include the torsional eccentricity of non-symmetrical buildings. The excitation model includes far-field plane seismic waves of P, S or Rayleigh type for viscoelastic soils and P1 and S type for poroelastic soils. Modelling foundation and structure as rigid body and Timoshenko beam respectively conveys important benefits such as a significant reduction in the number of degrees of freedom in the problem, which allows to study problems involving several building structures and the interactions between them with acceptable computational effort. Results are presented for validation purposes first, and for studying the influence of modelling the soil as a viscoelastic or poroelastic region afterwards. Results involving structure-soil-structure interaction are also presented for illustration purposes.
机译:本文提出了一个时谐边界元-有限元三维模型,用于基于粘弹性或多孔弹性土壤的建筑结构的动力分析。使用边界元素将建筑基础和土壤区域建模为均质,各向同性,粘弹性或多孔弹性介质。也可以将基础建模为耦合到土壤和结构的完美刚体。使用Timoshenko梁有限元对建筑物进行建模,其中包括非对称建筑物的扭转偏心率。激励模型包括对于粘弹性土壤为P,S或Rayleigh型的远场平面地震波,对于多孔弹性土壤为P1和S型。将基础和结构建模为刚体和Timoshenko梁分别带来了重要的好处,例如大大减少了问题的自由度,这使您可以用可接受的计算努力研究涉及多个建筑结构的问题以及它们之间的相互作用。结果首先用于验证目的,然后用于研究将土壤建模为粘弹性或多孔弹性区域的影响。还提供了涉及结构-土壤-结构相互作用的结果,以用于说明目的。

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