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2015 Journal Article Characterizing flow in oil reservoir rock using SPH: absolute permeabilityHolmes, David W., Williams, John R., Tilke, Peter G. and Leonardi, Christopher (2015). Characterizing flow in oil reservoir rock using SPH: absolute permeability. Computational Particle Mechanics, 3 (2), 141-154. doi: 10.1007/s40571-015-0038-7 |
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2015 Journal Article Electromagnetic excitation of particle suspensions in hydraulic fractures using a coupled lattice Boltzmann-discrete element modelLeonardi, Christopher R., McCullough, Jon W. S., Jones, Bruce D. and Williams, John R. (2015). Electromagnetic excitation of particle suspensions in hydraulic fractures using a coupled lattice Boltzmann-discrete element model. Computational Particle Mechanics, 3 (2), 125-140. doi: 10.1007/s40571-015-0035-x |
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2012 Journal Article Simulation of fines migration using a non-Newtonian lattice Boltzmann-discrete element model Part I: 2D implementation aspectsLeonardi, C. R., Owen, D. R. J. and Feng, Y. T. (2012). Simulation of fines migration using a non-Newtonian lattice Boltzmann-discrete element model Part I: 2D implementation aspects. Engineering Computations, 29 (3-4), 366-391. doi: 10.1108/02644401211227617 |
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2012 Journal Article Simulation of fines migration using a non-Newtonian lattice Boltzmann-discrete element model Part II: 3D extension and applicationsLeonardi, C. R., Owen, D. R. J. and Feng, Y. T. (2012). Simulation of fines migration using a non-Newtonian lattice Boltzmann-discrete element model Part II: 3D extension and applications. Engineering Computations, 29 (3-4), 392-418. doi: 10.1108/02644401211227635 |
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2011 Journal Article Numerical rheometry of bulk materials using a power law fluid and the lattice Boltzmann methodLeonardi, C. R., Owen, D. R. J. and Feng, Y. T. (2011). Numerical rheometry of bulk materials using a power law fluid and the lattice Boltzmann method. Journal of Non-Newtonian Fluid Mechanics, 166 (12-13), 628-638. doi: 10.1016/j.jnnfm.2011.02.011 |
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2011 Journal Article An efficient framework for fluid–structure interaction using the lattice Boltzmann method and immersed moving boundariesOwen, D. R. J., Leonardi, C. R. and Feng, Y. T. (2011). An efficient framework for fluid–structure interaction using the lattice Boltzmann method and immersed moving boundaries. International Journal for Numerical Methods in Engineering, 87 (1-5), 66-95. doi: 10.1002/nme.2985 |