Three-dimensional nonlinear analysis for seismic soil–pile-structure interaction
✍ Scribed by B.K. Maheshwari; K.Z. Truman; M.H. El Naggar; P.L. Gould
- Publisher
- Elsevier Science
- Year
- 2004
- Tongue
- English
- Weight
- 498 KB
- Volume
- 24
- Category
- Article
- ISSN
- 0267-7261
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✦ Synopsis
A three-dimensional method of analysis is presented for the seismic response of structures constructed on pile foundations. An analysis is formulated in the time domain and the effects of material nonlinearity of soil on the seismic response are investigated. A subsystem model consisting of a structure subsystem and a pile-foundation subsystem is used. Seismic response of the system is found using a successivecoupling incremental solution scheme. Both subsystems are assumed to be coupled at each time step. Material nonlinearity is accounted for by incorporating an advanced plasticity-based soil model, HiSS, in the finite element formulation. Both single piles and pile groups are considered and the effects of kinematic and inertial interaction on seismic response are investigated while considering harmonic and transient excitations. It is seen that nonlinearity significantly affects seismic response of pile foundations as well as that of structures. Effects of nonlinearity on response are dependent on the frequency of excitation with nonlinearity causing an increase in response at low frequencies of excitation.
📜 SIMILAR VOLUMES
Previous achievements using the dynamic non-linear analysis of an interaction system are reviewed briefly, after which a three dimensional (3D) model of the stress redistribution of soil based on the Mohr-Coulomb failure law is presented to evaluate the unbalanced tensor at every iteration in the lo
A new numerical procedure is proposed for the analysis of three-dimensional dynamic soil}structure interaction in the time domain. In this study, the soil is modelled as a linear elastic solid, however, the methods developed can be adapted to include the e!ects of soil non-linearities and hysteretic