International audienceIn this work, we present a new a posteriori error estimator based on the Variational Multiscale method for anisotropic adaptive fluid mechanics problems. The general idea is to combine the large scale error based on the solved part of the solution with the sub-mesh scale error based on the unresolved part of the solution. We compute the latter with two different methods: one using the stabilizing parameters and the other using bubble functions. We propose two different metric tensors H iso and H new aniso. They are both defined by the recovered Hessian matrix of the solution and rely on the new subgrid scale error estimator. Thus, we write a new anisotropic local error indicator and we test it for mesh adaptation on co...
In this thesis we present a new adaptive multiscale method for solving elliptic partial differential...
A compromise for \u201ccoarse\u201d and \u201cfine\u201d mesh generation in fluid-dynamic problems i...
In this work we develop an anisotropic a posteriori error analysis of the advection–diffusion–reacti...
International audienceThis work is motivated by the success of the anisotropic adaptive finite eleme...
This article investigates an explicit a-posteriori error estimator for the finite ele...
A-posteriori error estimation of convection-dominated and hyperbolic flow problems remains one of th...
International audienceWe propose a new mesh adaptation technique to solve the thermal problem of the...
Anisotropic mesh adaptation has been successfully applied to the numerical solution of partial diffe...
Abstract. A-posteriori error estimation of convection-dominated and hyperbolic flow problems remains...
Abstract. A new anisotropic mesh adaptation strategy for finite element solution of el-liptic differ...
In many application areas involving the mathematical modeling of convection, diusion, and reaction p...
A singularly perturbed convection-diffusion problem in two and three space dimensions is discretized...
Abstract. A new anisotropic mesh adaptation strategy for finite element solution of elliptic differe...
We provide a unifying framework that generalizes the 2D and 3D settings proposed in [32] and [17], ...
In this thesis we present a new adaptive multiscale method for solving elliptic partial differential...
In this thesis we present a new adaptive multiscale method for solving elliptic partial differential...
A compromise for \u201ccoarse\u201d and \u201cfine\u201d mesh generation in fluid-dynamic problems i...
In this work we develop an anisotropic a posteriori error analysis of the advection–diffusion–reacti...
International audienceThis work is motivated by the success of the anisotropic adaptive finite eleme...
This article investigates an explicit a-posteriori error estimator for the finite ele...
A-posteriori error estimation of convection-dominated and hyperbolic flow problems remains one of th...
International audienceWe propose a new mesh adaptation technique to solve the thermal problem of the...
Anisotropic mesh adaptation has been successfully applied to the numerical solution of partial diffe...
Abstract. A-posteriori error estimation of convection-dominated and hyperbolic flow problems remains...
Abstract. A new anisotropic mesh adaptation strategy for finite element solution of el-liptic differ...
In many application areas involving the mathematical modeling of convection, diusion, and reaction p...
A singularly perturbed convection-diffusion problem in two and three space dimensions is discretized...
Abstract. A new anisotropic mesh adaptation strategy for finite element solution of elliptic differe...
We provide a unifying framework that generalizes the 2D and 3D settings proposed in [32] and [17], ...
In this thesis we present a new adaptive multiscale method for solving elliptic partial differential...
In this thesis we present a new adaptive multiscale method for solving elliptic partial differential...
A compromise for \u201ccoarse\u201d and \u201cfine\u201d mesh generation in fluid-dynamic problems i...
In this work we develop an anisotropic a posteriori error analysis of the advection–diffusion–reacti...