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A novel nonlocal lattice particle model for fracture simulation of anisotropic materials is proposed.
A statistical model for fracture of aligned-whisker-reinforced metals was used to interpret tensile data of a TiB-reinforced titanium alloy.
The sheep model presented seems to meet the criteria for an osteopenia model for fracture treatment with respect to morphometric and mechanical properties.
A new multi-layered model for fracture analysis of functionally graded materials (FGMs) with the arbitrarily varying elastic modulus under plane deformation has been developed.
Kozicki, Application of discrete models to describe the fracture process in brittle materials, Ph.D. thesis, Gdańsk University of Technology, 2007, J. Kozicki, J. Tejchman, 2D lattice model for fracture in brittle materials, Arch.
A model for fracture of explosively driven metal shells presented in this work is based on integrating three-dimensional axisymmetric arbitrary Lagrangian Eulerian hydrocode analyses with analyses from a newly developed fragmentation computer code MOTT.
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The lower-dimensional fracture model also yields improved results when compared to those of the hybrid-grid model for fractures with low-permeability in the normal direction to the fracture.
3D permeability tensor model for fractured media is proposed on basis of the co-ordinate transformation principle.
Based on the quantitative characterization of 3D tensor permeability and Gangi's permeability stress sensitivity model, a new 3D Permeability tensor mathematical model for fractured media is derived. .
Based on the quantitative characterization of 3D tensor permeability and Gangi's permeability stress sensitivity model, a new 3D Permeability tensor mathematical model for fractured media is derived.
In this paper, the pressure transient model and rate decline model for fractured vertical wells in shale gas reservoir have been presented, and the parameters' sensitivity analysis has been studied.
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