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Journal of Computational Physics, ISSN 0021-9991, 06/2017, Volume 338, pp. 240 - 251
The discretized equilibrium distributions of the lattice Boltzmann method are presented by using the coefficients of the Lagrange interpolating polynomials... 
Navier–Stokes equations | Numerical stability | Lattice Boltzmann method | DERIVATION | GAS AUTOMATA | COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS | MODELS | HYDRODYNAMICS | NAVIER-STOKES EQUATION | SIMULATIONS | PHYSICS, MATHEMATICAL | Navier-Stokes equations
Journal Article
Journal of Computational Physics, ISSN 0021-9991, 06/2017, Volume 338, p. 240
The discretized equilibrium distributions of the lattice Boltzmann method are presented by using the coefficients of the Lagrange interpolating polynomials... 
Fluid mechanics | Lattice theory | Compressibility | Computational fluid dynamics | Computer simulation | Kelvin-Helmholtz instability | Fluid flow | Boltzmann distribution | Discrete element method | Navier Stokes equations | Flow velocity | Mathematical models | Navier-Stokes equations
Journal Article
Physical Review Letters, ISSN 0031-9007, 05/2015, Volume 114, Issue 17, p. 174502
A novel thermodynamically consistent lattice Boltzmann model that enables dynamical effects of two-phase fluids is developed. The key innovation is the... 
DENSITY RATIO | MODEL | SIMULATIONS | FLUID | PHYSICS, MULTIDISCIPLINARY | EQUATION | Fluids | Computational fluid dynamics | Simulation | Multiphase flow | Dynamics | Lattices | Fluid flow | Droplets
Journal Article
Computers and Mathematics with Applications, ISSN 0898-1221, 02/2014, Volume 67, Issue 2, pp. 350 - 362
To improve the stability of the lattice Boltzmann method (LBM) at high Reynolds number the cascaded LBM has recently been introduced. As in the multiple... 
Cascaded LBM | Lattice Boltzmann | Multiphase | Spurious velocities | MATHEMATICS, APPLIED | EQUATIONS | NONIDEAL GASES | STATE | MODEL | FLOWS | SIMULATION | LIQUID-GAS
Journal Article
Journal of Fluid Mechanics, ISSN 0022-1120, 8/2010, Volume 656, pp. 298 - 308
We present three-dimensional direct numerical simulations (DNS) of the Kida vortex flow, a prototypical turbulent flow, using a novel high-order lattice... 
computational methods | turbulence simulation | isotropic turbulence | MECHANICS | BGK MODELS | PHYSICS, FLUIDS & PLASMAS | EQUATION | Turbulence | Turbulent flow | Direct numerical simulation | Computational fluid dynamics | Lattices | Fluid flow | Mathematical models | Statistics
Journal Article
Physical Review Letters, ISSN 0031-9007, 12/2005, Volume 95, Issue 26, p. 260605
Lack of energy conservation in lattice Boltzmann models leads to unrealistically high values of the bulk viscosity. For this reason, the lattice Boltzmann... 
FLOWS | MODELS | PHYSICS, MULTIDISCIPLINARY | SIMULATION | EQUATION | Physics - Statistical Mechanics
Journal Article
Physical Review E, ISSN 1539-3755, 2013, Volume 88, Issue 1, pp. 013309 - 1/13
A lattice Boltzmann method for axisymmetric multiphase flows is presented and validated. The method is capable of accurately modeling flows with variable... 
Journal Article | FLOWS | MODEL | FLUID | PHYSICS, MATHEMATICAL | PHYSICS, FLUIDS & PLASMAS
Journal Article
Physica A: Statistical Mechanics and its Applications, ISSN 0378-4371, 01/2015, Volume 417, pp. 273 - 286
In this paper magnetohydrodynamic free convection flow of CuO–water nanofluid in a square enclosure with a rectangular heated body is investigated numerically... 
Natural convection | Magnetohydrodynamic | Lattice Boltzmann Method | Nanofluid | Heat transfer | Entropy generation | BROWNIAN-MOTION | NATURAL-CONVECTION | ROTATING POROUS DISK | PHYSICS, MULTIDISCIPLINARY | MHD | CONVECTION HEAT-TRANSFER | KKL MODEL | FLOW | SQUARE ENCLOSURE | VISCOUS DISSIPATION | NUMERICAL-SIMULATION | Magnetic fields | Analysis | Methods
Journal Article
Physica B: Physics of Condensed Matter, ISSN 0921-4526, 07/2017, Volume 516, pp. 55 - 71
Magnetohydrodynamic nanofluid convective flow in cubic porous enclosure is reported. Lattice Boltzmann Method is selected as mesoscopic approach. Brownian... 
Porous media | Brownian motion | Natural convection | Lattice Boltzmann Method | Nanofluid | Lorentz forces | NATURAL-CONVECTION | PHYSICS, CONDENSED MATTER | HEAT-TRANSFER ENHANCEMENT | FORCED-CONVECTION | WATER-BASED NANOFLUID | ENTROPY GENERATION | POROUS ENCLOSURE | MAGNETIC-FIELD | THERMAL-RADIATION | NUMERICAL-SIMULATION | Analysis | Methods | Permeability
Journal Article
Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, ISSN 1539-3755, 04/2009, Volume 79, Issue 4, p. 046701
A recently introduced theory of higher-order lattice Boltzmann models [Chikatamarla and Karlin, Phys. Rev. Lett. 97, 190601 (2006)] is elaborated in detail. A... 
flow simulation | entropy | BGK MODELS | PHYSICS, FLUIDS & PLASMAS | HYDRODYNAMICS | lattice Boltzmann methods | NAVIER-STOKES EQUATION | PHYSICS, MATHEMATICAL
Journal Article
Computers and Mathematics with Applications, ISSN 0898-1221, 2009, Volume 58, Issue 5, pp. 965 - 974
We investigate the use of various equations of state (EOS) in the single-component multiphase lattice Boltzmann model. Several EOS are explored: van der Waals,... 
Two-phase flow | Equation of state | Lattice Boltzmann equation method | Phase transition | MATHEMATICS, APPLIED | MODELS | MULTIPHASE FLOWS | LIQUID | NONIDEAL GASES | SIMULATION | Thermodynamics | Fluid dynamics | Analysis | Methods
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 2017, Volume 108, pp. 1870 - 1883
In this paper, nanofluid forced convection heat transfer is investigated in existence of magnetic field. Three dimensional simulations are presented by means... 
KKL model | MHD | Forced convection | Lattice Boltzmann Method | Nanofluid | WALL | CAVITY | MODEL | RADIATION | MIXED CONVECTION | FLOW | ENGINEERING, MECHANICAL | MECHANICS | THERMODYNAMICS | CONJUGATE NATURAL-CONVECTION | ENHANCEMENT | POROUS ENCLOSURE | Numerical analysis | Magnetic fields | Analysis | Methods
Journal Article