Quantitative comparison between the measured deformation of a neutrally buoyant drop, obtained with an appropriately conceived three-dimensional, multicomponent lattice Boltzmann equation simulation methods for continuum multicomponent hydrodynamics [Phys. Rev. E 76, 026708 (2007); 76, 026709 (2007)], are shown to be in agreement with the theoretical predictions of Taylor and Acrivos [J. Fluid. Mech. 18(3), 466 (1964)]
Extensive application of the multiphase lattice Boltzmann model to realistic fluid flows is often re...
Multi-component fluid flows are frequently seen in both nature and industry, such as gas-liquid flo...
The option of varying the molecular mass in multicomponent lattice Boltzmann simulations is being ex...
For simulating immiscible two-phase flows and realizing the easy adjustment of surface tension and i...
In this work I shall give details of the development of a two dimensional Lattice Boltzmann algorith...
In this paper, a lattice Boltzmann color-gradient method is compared with a multi-component pseudo-p...
The simulation of multicomponent fluids at low Reynolds number and low capillary number is of intere...
We present and verify a multicomponent lattice Boltzmann simulation scheme for two immiscible and in...
Although multiphase gas and liquid phenomena occurs widely in engineering problems, many aspects of ...
While various multiphase flow simulation techniques have found acceptance as predictive tools for pr...
\u3cp\u3eAbstract.: We study the deformation and dynamics of droplets in time-dependent flows using ...
We present an improved three-dimensional 19-velocity lattice Boltzmann model for immisicible binary ...
In pseudopotential lattice Boltzmann (LB) models for simulating multicomponent flows, interaction fo...
Summarization: Lattice-Boltzmann (LB) models provide a systematic formulation of effective-field com...
The lattice Boltzmann method (LBM) for computational fluid dynamics benefits from a simple, explicit...
Extensive application of the multiphase lattice Boltzmann model to realistic fluid flows is often re...
Multi-component fluid flows are frequently seen in both nature and industry, such as gas-liquid flo...
The option of varying the molecular mass in multicomponent lattice Boltzmann simulations is being ex...
For simulating immiscible two-phase flows and realizing the easy adjustment of surface tension and i...
In this work I shall give details of the development of a two dimensional Lattice Boltzmann algorith...
In this paper, a lattice Boltzmann color-gradient method is compared with a multi-component pseudo-p...
The simulation of multicomponent fluids at low Reynolds number and low capillary number is of intere...
We present and verify a multicomponent lattice Boltzmann simulation scheme for two immiscible and in...
Although multiphase gas and liquid phenomena occurs widely in engineering problems, many aspects of ...
While various multiphase flow simulation techniques have found acceptance as predictive tools for pr...
\u3cp\u3eAbstract.: We study the deformation and dynamics of droplets in time-dependent flows using ...
We present an improved three-dimensional 19-velocity lattice Boltzmann model for immisicible binary ...
In pseudopotential lattice Boltzmann (LB) models for simulating multicomponent flows, interaction fo...
Summarization: Lattice-Boltzmann (LB) models provide a systematic formulation of effective-field com...
The lattice Boltzmann method (LBM) for computational fluid dynamics benefits from a simple, explicit...
Extensive application of the multiphase lattice Boltzmann model to realistic fluid flows is often re...
Multi-component fluid flows are frequently seen in both nature and industry, such as gas-liquid flo...
The option of varying the molecular mass in multicomponent lattice Boltzmann simulations is being ex...