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However, problems remain with respect to building PFC models that can represent SRM's real structure.
Based on the PFC models, the entire compression-induced failure process was simulated in PFC3D.
The three-dimensional (3D) PFC models that represent the SRM's complex structures were built.
Few 3D PFC models with real rock geometry of SRM are available.
By comparing simulation results with experimental data, it was verified that the 3D PFC models were in good agreement with SRM's real structure and the SRM's compression process, deformation and failure patterns; its intrinsic mesomechanism can be effectively analyzed based on such 3D PFC models.
It shows that this paper provides a fast and accurate method for the determination of meso-level mechanical parameters of PFC models.
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Open image in new window Fig. 14 PFC model.
For the simulation, a PFC model, 52 × 22 m, filled with 88,001 particles, was created.
We study two-dimensional grain growth at the nanoscale using the phase field crystal (PFC) model.
In the first example a 3D fracture system was linked into a 2D PFC model.
These have been overcome by providing a complete integration of a 3D fracture system to a 3D PFC model.
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