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Modeling Using Coupled FEM-SBFEM for Three-Dimensional Seismic SSI in Time Domain

机译:时域三维地震SSI耦合FEM-SBFEM建模

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摘要

For soil-structure interaction (SSI) problems, accurate modeling of the unbounded domain is an important issue. This paper deals with the three-dimensional seismic SSI analysis based on the substructure method by coupling the FEM and the scaled boundary FEM (SBFEM) approaches. The entire analysis is performed in the time domain making the proposed approach capable of dealing with nonlinearity of soil. To verify the developed program, the results from the present analysis are compared with those available in the literature. This verification has been performed for both externally applied dynamic load and seismic load. The effect of boundary conditions on the SSI response is evaluated. The numerical study performed indicates that the SBFEM can act as a computationally efficient boundary when compared with the conventional viscous dashpots. Next, application of the FEM-SBFEM for SSI problems is demonstrated. A dam-foundation interaction analysis is carried out, and the effect of the inhomogeneity of the foundation soil on the dynamic response of the structure is evaluated. In addition, seismic SSI analysis of a building is carried out for a real earthquake excitation. The effects of the dynamic characteristics of soil and structure on the dynamic SSI response are analyzed.
机译:对于土壤-结构相互作用(SSI)问题,无界域的精确建模是一个重要的问题。本文结合有限元法和比例边界法(SBFEM),对基于子结构方法的三维地震SSI进行了分析。整个分析是在时域中进行的,使得所提出的方法能够处理土壤的非线性。为了验证开发的程序,将当前分析的结果与文献中的结果进行比较。已经对外部施加的动态载荷和地震载荷进行了该验证。评估了边界条件对SSI响应的影响。进行的数值研究表明,与常规粘性阻尼器相比,SBFEM可以作为计算有效边界。接下来,演示了FEM-SBFEM在SSI问题中的应用。进行了坝基相互作用分析,并评估了基础土的不均匀性对结构动力响应的影响。此外,还对建筑物进行了地震SSI分析,以进行真实的地震激励。分析了土壤和结构的动力特性对SSI动力响应的影响。

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