A fluctuating lattice-Boltzmann model for direct numerical simulation of particle Brownian motion |
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Authors: | Deming Nie Jianzhong Lin |
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Affiliation: | [1]State Key Laboratory of Fluid Power Transmission and Control, Zhejiang University, Hangzhou 310027, China [2]China Jiiiang University, Hangzhou 310018, China |
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Abstract: | A single-relaxation-time fluctuating lattice-Boltzmann (LB) model for direct numerical simulation (DNS) of particle Brownian motion is established by adding a fluctuating component to the lattice-Boltzmann equations (LBEs). The fluctuating term is proved to be the random stress tensor in fluctuating hydrodynamics by recovering Navier–Stokes equations from LBEs through a Chapman–Enskog expansion. A three-dimensional implementation of the model is also presented, along with simulations of a single spherical particle and 125 spherical particles at short times. Numerical results including the mean-square displacement, velocity autocorrelation function and self-diffusion coefficient of particles compare favorably with theoretical results and previous numerical results. |
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Keywords: | Fluctuating hydrodynamics Lattice-goltzmann method Brownian motion Direct numerical simulation |
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