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Such functional was obtained using the direct time domain BEM.
Direct time integration is the most popular method for solving nonlinear equations of motion.
In the latter case, bifurcation diagrams of Poincaré maps are obtained via direct time integration.
The pseudo-arclength continuation technique along with direct time integration are used to solve these equations.
An explicit method is then developed to perform direct time integration.
Finally, the transient responses of a bi-layered multiferroic composite are calculated by using the direct time integration method.
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Additionally, direct time-derivative preconditioning of the LB equation is also studied.
Effectiveness of the scheme is demonstrated by direct time-domain numerical simulations.
The model allows the study of harmonic content because of its direct time-frequency representation.
A boundary element formulation based on a direct time-domain formulation using elastostatic fundamental solutions was used.
A boundary element formulation based on a direct time-domain formulation using the elastostatic fundamental solutions was used.
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