AbstractIn this paper we describe an extension of a recently developed lattice Boltzmann method for solving the advection–diffusion equation. Our proposed approach allows to couple grids of different grid resolutions and includes a staggered timestepping scheme, interpolations in space and time and finally a scaling step ensuring the continuity of the desired macroscopic quantities across the grid interface.After validating the basic lattice Boltzmann method on a uniform grid by a convergence study of analytic problems we demonstrate the consistency of our approach by solving benchmark problems and comparing results on uniform grids and multiply locally refined grids
Lattice Boltzmann Method (LBM) computationally can be split into two steps process: advection and co...
This thesis is concerned with the new formulation of a finite-volume lattice Boltzmann equation meth...
AbstractIn this paper a novel two-dimensional lattice Boltzmann model (LBM) is developed for uniform...
AbstractIn this paper we describe an extension of a recently developed lattice Boltzmann method for ...
Traditional Lattice-Boltzmann modelling of advection–diffusion flow is affected by numerical instabi...
YesTraditional Lattice-Boltzmann modelling of advection–diffusion flow is affected by numerical inst...
Traditional Lattice-Boltzmann modelling of advection–diffusion flow is affected by numerical instabi...
We test a second order central difference scheme and a first order upwind scheme for the advection o...
Lattice-Boltzmann models (LBM) are very powerful simulation techniques for fluid dynamics, diffusion...
peer reviewedLattice-Boltzmann (LB) methods are a well-known technique in the context of computatio...
Abstract This article addresses the abilities and limitations of the Lattice Boltzmann (LB) method ...
AbstractIn a seminal paper [20], Ginzburg and Adler (1994) analyzed the bounce-back boundary conditi...
Mass transport, such as movement of phosphorus in soils and solutes in rivers, is a natural phenomen...
This contribution proposes an alternative lattice Boltzmann grid refinement algorithm that overcomes...
Mass transport, such as movement of phosphorus in soils and solutes in rivers, is a natural phenomen...
Lattice Boltzmann Method (LBM) computationally can be split into two steps process: advection and co...
This thesis is concerned with the new formulation of a finite-volume lattice Boltzmann equation meth...
AbstractIn this paper a novel two-dimensional lattice Boltzmann model (LBM) is developed for uniform...
AbstractIn this paper we describe an extension of a recently developed lattice Boltzmann method for ...
Traditional Lattice-Boltzmann modelling of advection–diffusion flow is affected by numerical instabi...
YesTraditional Lattice-Boltzmann modelling of advection–diffusion flow is affected by numerical inst...
Traditional Lattice-Boltzmann modelling of advection–diffusion flow is affected by numerical instabi...
We test a second order central difference scheme and a first order upwind scheme for the advection o...
Lattice-Boltzmann models (LBM) are very powerful simulation techniques for fluid dynamics, diffusion...
peer reviewedLattice-Boltzmann (LB) methods are a well-known technique in the context of computatio...
Abstract This article addresses the abilities and limitations of the Lattice Boltzmann (LB) method ...
AbstractIn a seminal paper [20], Ginzburg and Adler (1994) analyzed the bounce-back boundary conditi...
Mass transport, such as movement of phosphorus in soils and solutes in rivers, is a natural phenomen...
This contribution proposes an alternative lattice Boltzmann grid refinement algorithm that overcomes...
Mass transport, such as movement of phosphorus in soils and solutes in rivers, is a natural phenomen...
Lattice Boltzmann Method (LBM) computationally can be split into two steps process: advection and co...
This thesis is concerned with the new formulation of a finite-volume lattice Boltzmann equation meth...
AbstractIn this paper a novel two-dimensional lattice Boltzmann model (LBM) is developed for uniform...