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Lattice-Gas Automata for the Navier-Stokes Equation

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TLDR
It is shown that a class of deterministic lattice gases with discrete Boolean elements simulates the Navier-Stokes equation, anc, and can be used to design simple, massively parallel computing machines.
Abstract
We show that a class of deterministic lattice gases with discrete Boolean elements simulates the Navier-Stokes equation, anc can be used to design simple, massively parallel computing machines.

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Citations
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Journal ArticleDOI

Spinodal decomposition in a lattice-gas automaton

TL;DR: In this paper, a lattice-gaz model of spinodal decomposition was analyzed and the authors obtained a theoretical prediction of the diffusion coefficient by solving a discrete Boltzmann equation.
Journal ArticleDOI

Cylinder wake in lattice gas hydrodynamics

TL;DR: In this paper, a lattice gas algorithm was used to measure the time development of a wake behind a cylinder at Reynolds numbers equal to 30 and 60, and the drag at these values was determined to be the Reynolds number where vortex shedding starts.
Journal ArticleDOI

A lattice Boltzmann model for the simulation of fluid flow

TL;DR: In this article, a lattice Boltzmann algorithm was proposed to simulate 2D fluid flow through a plane channel and a parabolic flow profile was obtained, in excellent agreement with the analytical Navier-Stokes solution.
Journal ArticleDOI

Performance evaluation of the cell‐based algorithms for domain decomposition in flow simulation

TL;DR: The cell‐based method of domain decomposition was first introduced for complex 3D geometries and can find the subdomain interfaces successfully and the numerical results agree well with the exact solutions.
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