activity
20032008
most citedLattice Boltzmann method at finite-Knudsen numbers

141 citations · 369 across the 11 of their papers we have counts for

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Showing 2008Show all

7 papers · 1 filter

physics.bio-ph200895 cited

Hydrodynamic correlations in the translocation of biopolymer through a nanopore: theory and multiscale simulations

Maria Fyta, Simone Melchionna, Sauro Succi +1

We investigate the process of biopolymer translocation through a narrow pore using a multiscale approach which explicitly accounts for the hydrodynamic interactions of the molecule…

physics.flu-dyn20081 cited

Capillary filling with randomly coated walls

Fabiana Diotallevi, Andrea Puglisi, Antonio Lamura +1

The motion of an air-fluid interface through an irregularly coated capillary is studied by analysing the Lucas-Washburn equation with a random capillary force. The pinning probabil…

physics.flu-dyn200842 cited

Evidence of thin-film precursors formation in hydrokinetic and atomistic simulations of nano-channel capillary filling

S. Chibbaro, L. Biferale, F. Diotallevi +6

We present hydrokinetic Lattice Boltzmann and Molecular Dynamics simulations of capillary filling of high-wetting fluids in nano-channels, which provide clear evidence of the forma…

physics.flu-dyn200815 cited

Front pinning in capillary filling of chemically coated channels

F. Diotallevi, L. Biferale, S. Chibbaro +2

The dynamics of capillary filling in the presence of chemically coated heterogeneous boundaries is investigated, both theoretically and numerically. In particular, by mapping the e…

physics.comp-ph200855 cited

Quantized current blockade and hydrodynamic correlations in biopolymer translocation through nanopores: evidence from multiscale simulations

Massimo Bernaschi, Simone Melchionna, Sauro Succi +2

We present a detailed description of biopolymer translocation through a nanopore in the presence of a solvent, using an innovative multi-scale methodology which treats the biopolym…

nlin.CG20081 cited

Capillary filling using Lattice Boltzmann Equations: the case of multi-component fluids

S. Chibbaro, L. Biferale, F. Diotallevi +1

We present a systematic study of capillary filling for a binary fluid by using mesoscopic a lattice Boltzmann model describing a diffusive interface moving at a given contact angle…