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The seismic vulnerability is evaluated in terms of analytical fragility curves constructed on the basis of non-linear dynamic finite elements (FE) analysis.
Using this technique, dynamic finite elements can be obtained in a simpler form than that based on the application of the conventional Mindlin theory.
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To gain insights into the effects of operational timing on the LBTS handling performance, the multibody dynamics is modeled numerically based on the method of explicit dynamic finite element analysis (FEA) using off-the-shelf FEA packages.
The structure responses are computed using dynamic finite element analysis.
This paper presents a dynamic finite element approach dynamic finite element approach for following the evolution of residual thermal stress during pulsed exposure of multilevel structures.
To simulate the experiments, a numerical model based on dynamic finite element analysis was constructed.
The numerical simulations are carried out based on the transient dynamic finite element program ANSYS-LSDYNA.
Finally, the dynamic finite element model updating is used for damage quantification.
The method has been implemented into the explicit dynamic finite element code DYNA3D.
Non-linear dynamic finite element analyses were carried out to simulate the quasi-static tests.
In this study, nonlinear dynamic finite element is used to simulate the SAE wheel impact test.
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