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This chapter reviews the important linkage between Computer-Aided Design product models and Finite Elemtn (F.E).
Comparison between analytical models and finite element simulations provides good convergence of results.
The numerical models mainly refer to discrete element models and finite element models.
Several finite element models and finite prism models based on the elasticity theory formulation are compared.
The models are categorized as multiple coupled circuit models, dq models, magnetic equivalent circuit models and finite element models.
The experimental data generated here will be useful in the development of holistic macroscale constitutive models and finite element studies of the chosen test composite.
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Regimes are identified wherein elastic properties can be obtained from either linear or non-linear load deflection response, using point-load plate models and finite-contact membrane models, respectively.
Within this context, three modelling strategies of different complexity are proposed: equivalent frame model, rigid macro-block model and finite element model.
It uses the RSM turbulence model and finite volume method for model solution.
Skeleton model, geometric mesh model, and finite element model including finite element mesh and property data are established on parametric description and automatic update.
Moreover, such sensitivity study gives important guidelines in poroelastic material modelling and finite element disc validation.
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