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This BEM approach is the most popular in the modelling of fracture problems and lead to accurate results.
As previously presented, a small amount of researches are available in the literature concerning the viscoelastic modelling of fracture mechanics problems by numerical approaches based on the BEM.
59 (4–5) (2007) 365 384, J. Kozicki, J. Tejchman, Modelling of fracture process in concrete using a novel lattice model, Granul.
These models are starting to reach the limits of their applicability, so there is interest to look deeper into micromechanical modelling of fracture processes.
In the present study, nonlocal damage models with different averaging procedures are applied to the modelling of fracture in specimens with various boundary types.
The performance of the nonlocal approaches in modelling of fracture near nonconvex boundaries is evaluated by comparison of load displacement curves and dissipated energy profiles along the beam ligament with the results of meso-scale simulations.
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Modeling of fracture clusters is difficult with the assumption of random fracture locations.
Figure 15 shows elastic and conventional models of fracture oil saturation.
A 2-D and single-phase model of fracture gas reservoir was developed (Shane and Hattingh 2009).
Our findings provide critical hints for atomistic-informed multiscale modeling of fracture of two-dimensional materials.
Four models of fracture networks with different facture spacing and varied inclination angle are considered.
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