Percolation through Voids around Randomly Oriented Platonic Solids
@inproceedings{Priour2018PercolationTV, title={Percolation through Voids around Randomly Oriented Platonic Solids}, author={Donald Priour and Nicholas McGuigan}, year={2018} }
Porous materials made up of impermeable polyhedral grains constrain fluid flow to voids around the impenetrable constituent barrier particles. A percolation transition marks the boundary between assemblies of grains which contain system spanning void networks, admitting bulk transport, and configurations which may not be traversed on macroscopic scales. With dynamical infiltration of void spaces using virtual tracer particles, we give an exact treatment of grain geometries, and we calculate…
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References
SHOWING 1-9 OF 9 REFERENCES
Introduction To Percolation Theory
- Physics
- 1985
Preface to the Second Edition Preface to the First Edition Introduction: Forest Fires, Fractal Oil Fields, and Diffusion What is percolation? Forest fires Oil fields and fractals Diffusion in…
Phys
- Rev. Lett. 52, 1516
- 1984
Phys
- Rev. E 62, 68
- 2000
Ohio Supercomputer Center
- 1987
Phys
- 128, 164517
- 2008
Phys
- 111, 124903
- 2012
Phys
- Rev. E 74, 031112
- 2006
Phys
- Rev. E 50, 403
- 1994
Phys
- Rev. B, 14, 3438
- 1976