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The composite behavior was simulated through the finite element analysis of a three-dimensional representative volume element of the composite microstructure, and interface decohesion was included by means of interface elements whose behavior was governed by a cohesive crack model.
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The quasibrittle fracture behavior is simulated through cohesive zone model (bilinear softening) using a constant set of cohesive parameters whatever the specimen size D is.
The mode I and mixed mode cracking behaviors are simulated through changing the beam location in the loading setup.
Within the crew context, each individual operator's behaviors are simulated through a cognitive model under the influence of a number of explicitly modeled performance-influencing factors.
The material behavior was simulated using finite element method.
Flow behavior of the gas and particle in the pre-calciner was simulated through using the large eddy simulations and the kinetic theory of granular flow.
Sampling was simulated through a tessellation stratified design.
Steady state and unsteady state process behaviors were simulated.
Usually, the diffusion behaviors were simulated by linear Laplace diffusion items [9 16].
The hydrodynamic and mixing behaviors of reactants phase and catalyst phase in the microreactor with different channel size were simulated through Computational Fluid Dynamics.
In this 3D numerical model, mechanical behaviors of the soil elements were simulated by Mohr-Coulomb model; the excavation and the excavation support were simulated through the Null Elements and Structural Unit, respectively.
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