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20112020
most citedAdditional interfacial force in lattice Boltzmann models for incompressible multiphase flows

121 citations

5 papers

physics.flu-dyn2020★ 31 cited

An efficient cellular flow model for cohesive particle flocculation in turbulence

K. Zhao, B. Vowinckel, T. -J. Hsu +3

We propose a one-way coupled model that tracks individual primary particles in a conceptually simple cellular flow setup to predict flocculation in turbulence. This computationally…

math.NA2019★ 16 cited

A mixed discontinuous Galerkin method with symmetric stress for Brinkman problem based on the velocity-pseudostress formulation

Yanxia Qian, Shuonan Wu, Fei Wang

The Brinkman equations can be regarded as a combination of the Stokes and Darcy equations which model transitions between the fast flow in channels (governed by Stokes equations) a…

cond-mat.mtrl-sci2013★ 21 cited

First-principles molecular dynamics simulations of proton diffusion in cubic BaZrO3 perovskite under strain conditions

Marco Fronzi, Yoshitaka Tateyama, Nicola Marzari +1

First-principles molecular dynamics simulations have been employed to analyze the proton diffusion in cubic BaZrO3 perovskite at 1300K, and a non-linear effect of an applied isomet…

physics.comp-ph2011★ 121 cited

Additional interfacial force in lattice Boltzmann models for incompressible multiphase flows

Q. Li, K. H. Luo, Y. J. Gao

The existing lattice Boltzmann models for incompressible multiphase flows are mostly constructed with two distribution functions, one is the order parameter distribution function,…

physics.comp-ph2011★ 120 cited

Coupling lattice Boltzmann model for simulation of thermal flows on standard lattices

Q. Li, K. H. Luo, Y. L. He +2

In this paper, a coupling lattice Boltzmann (LB) model for simulating thermal flows on the standard D2Q9 lattice is developed in the framework of the double-distribution-function (…