Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Nonlinear Response of Soil–Structure Systems using Dynamic Centrifuge Experiments
This study presents centrifuge tests analysis of nonlinear soil–structure interactions and the reciprocal influence of the soil and the structure. Weak and strong motions were considered and applied to several centrifuge setups, implemented “with” or “without” buildings. For each setup, the response of the site was analyzed using arrays of accelerometers located in the soil and buildings, using time and frequency domain methods. We conclude that the presence of buildings may strongly modify the nonlinear soil response in the free field and the simplified relationships linking the contribution of each motion to the overall soil–structure system response were discussed.
Nonlinear Response of Soil–Structure Systems using Dynamic Centrifuge Experiments
This study presents centrifuge tests analysis of nonlinear soil–structure interactions and the reciprocal influence of the soil and the structure. Weak and strong motions were considered and applied to several centrifuge setups, implemented “with” or “without” buildings. For each setup, the response of the site was analyzed using arrays of accelerometers located in the soil and buildings, using time and frequency domain methods. We conclude that the presence of buildings may strongly modify the nonlinear soil response in the free field and the simplified relationships linking the contribution of each motion to the overall soil–structure system response were discussed.
Nonlinear Response of Soil–Structure Systems using Dynamic Centrifuge Experiments
Chandra, Johanes (Autor:in) / Guéguen, Philippe (Autor:in)
Journal of Earthquake Engineering ; 23 ; 1719-1741
26.11.2019
23 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
British Library Online Contents | 2013
|Nonlinear Dynamic Soil-Micropile-Structure Interactions: Centrifuge Tests and FEM Analyses
British Library Conference Proceedings | 2010
|Seismic soil–foundation–structure interaction observed in geotechnical centrifuge experiments
Online Contents | 2013
|