An enthalpy-source based novel lattice Boltzmann technique is formulated for numerical simulation of conduction-dominated phase change processes of single-component systems. The proposed model is based on a classical lattice Boltzmann scheme for description of internal energy evolution with a fixed-grid enthalpy-based formulation for capturing the phase boundary evolution in an implicit fashion. A single particle density distribution function is used for calculating the thermal variable. The macroscopic energy equation is found to be recovered following the Chapman–Enskog multiscale expansion procedure. It is also found that predictions from the present model agree excellently with results obtained from established analytical/numerical mode...
An enthalpy-based thermal lattice Boltzmann model is introduced for simulating a class of strongly ...
AbstractThe phase-change problem is solved by the migration-collision scheme of lattice Boltzmann me...
AbstractWe investigate the use of various equations of state (EOS) in the single-component multiphas...
A lattice Boltzmann (LB) method is presented for solving the energy conservation equation in two pha...
An extended lattice Boltzmann (LB) formulation is developed for simulation of three-dimensional heat...
In this work, a new variation of the lattice Boltzmann method (LBM) was developed to solve the heat ...
A three-dimensional lattice Boltzmann (LB) scheme is presented in this article to address the incomp...
An extended lattice Boltzmann model is developed for simulating the convection–diffusion phenomena a...
Abstract A three dimensional numerical simulation is performed in order to understand the transport ...
The lattice Boltzmann method is an efficient computational fluid dynamics technique that can accurat...
International audienceA nu mer i cal scheme cou pling lat tice Boltzmann and fi nite vol umes ap pro...
In the present Letter, a hybrid lattice Boltzmann methodology is developed for simulating convection...
In this paper, we propose a new lattice Boltzmann model for two-phase flows pertinent to thermal non...
A double-population lattice Boltzmann method is applied to simulate the convection–diffusion phenome...
The present work uses the Lattice Boltzmann method for solving solid/liquid phase change problems. T...
An enthalpy-based thermal lattice Boltzmann model is introduced for simulating a class of strongly ...
AbstractThe phase-change problem is solved by the migration-collision scheme of lattice Boltzmann me...
AbstractWe investigate the use of various equations of state (EOS) in the single-component multiphas...
A lattice Boltzmann (LB) method is presented for solving the energy conservation equation in two pha...
An extended lattice Boltzmann (LB) formulation is developed for simulation of three-dimensional heat...
In this work, a new variation of the lattice Boltzmann method (LBM) was developed to solve the heat ...
A three-dimensional lattice Boltzmann (LB) scheme is presented in this article to address the incomp...
An extended lattice Boltzmann model is developed for simulating the convection–diffusion phenomena a...
Abstract A three dimensional numerical simulation is performed in order to understand the transport ...
The lattice Boltzmann method is an efficient computational fluid dynamics technique that can accurat...
International audienceA nu mer i cal scheme cou pling lat tice Boltzmann and fi nite vol umes ap pro...
In the present Letter, a hybrid lattice Boltzmann methodology is developed for simulating convection...
In this paper, we propose a new lattice Boltzmann model for two-phase flows pertinent to thermal non...
A double-population lattice Boltzmann method is applied to simulate the convection–diffusion phenome...
The present work uses the Lattice Boltzmann method for solving solid/liquid phase change problems. T...
An enthalpy-based thermal lattice Boltzmann model is introduced for simulating a class of strongly ...
AbstractThe phase-change problem is solved by the migration-collision scheme of lattice Boltzmann me...
AbstractWe investigate the use of various equations of state (EOS) in the single-component multiphas...