arXiv · 0907.0663
Nanoflows through disordered media: a joint Lattice Boltzmann and Molecular Dynamics investigation
Abstract
We investigate nanoflows through dilute disordered media by means of joint lattice Boltzmann (LB) and molecular dynamics (MD) simulations -- when the size of the obstacles is comparable to the size of the flowing particles -- for randomly located spheres and for a correlated particle-gel. In both cases at sufficiently low solid fraction, $Φ<0.01$, LB and MD provide similar values of the permeability. However, for $Φ> 0.01$, MD shows that molecular size effects lead to a decrease of the permeability, as compared to the Navier-Stokes predictions. For gels, the simulations highlights a surplus of permeability, which can be accommodated within a rescaling of the effective radius of the gel monomers.
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J. Russo, J. Horbach, F. Sciortino, S. Succi. 2010-02-09. Nanoflows through disordered media: a joint Lattice Boltzmann and Molecular Dynamics investigation. https://doi.org/10.1209/0295-5075%2F89%2F44001
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