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Real-Time Dynamic Hybrid Testing Coupling Finite Element and Shaking Table
In this article, a Simulink simulation block with the finite element function is developed on the basis of S-function and implemented as the numerical substructure of real-time dynamic hybrid testing. Thereby, a real-time dynamic hybrid testing system coupling finite element calculation and shaking table testing is achieved. Using the developed system, a shear frame mounted on the soil foundation is tested, in which the shear frame is simulated as the physical model and the foundation is simulated as the finite element model with 132 degrees of freedom. Several cases of the dynamic behavior of soil-structure interaction are studied.
Real-Time Dynamic Hybrid Testing Coupling Finite Element and Shaking Table
In this article, a Simulink simulation block with the finite element function is developed on the basis of S-function and implemented as the numerical substructure of real-time dynamic hybrid testing. Thereby, a real-time dynamic hybrid testing system coupling finite element calculation and shaking table testing is achieved. Using the developed system, a shear frame mounted on the soil foundation is tested, in which the shear frame is simulated as the physical model and the foundation is simulated as the finite element model with 132 degrees of freedom. Several cases of the dynamic behavior of soil-structure interaction are studied.
Real-Time Dynamic Hybrid Testing Coupling Finite Element and Shaking Table
Zhou, Meng-Xia (author) / Wang, Jin-Ting (author) / Jin, Feng (author) / Gui, Yao (author) / Zhu, Fei (author)
Journal of Earthquake Engineering ; 18 ; 637-653
2014-05-19
17 pages
Article (Journal)
Electronic Resource
English
Real-Time Dynamic Hybrid Testing Coupling Finite Element and Shaking Table
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