We derive an anisotropic a posteriori error estimate for the adaptive conforming virtual element approximation of a paradigmatic two-dimensional elliptic problem. In particular, we introduce a quasi- interpolant operator and exploit its approximation results to prove the reliability of the error indicator. We design and implement the corresponding adaptive polygonal anisotropic algorithm. Several numerical tests assess the superiority of the proposed algorithm in comparison with standard polygonal isotropic mesh refinement schemes
In recent years, the numerical treatment of boundary value problems with the help of polygonal and p...
In recent years, the numerical treatment of boundary value problems with the help of polygonal and p...
In recent years, the numerical treatment of boundary value problems with the help of polygonal and p...
We derive an anisotropic a posteriori error estimate for the adaptive conforming virtual element app...
We derive an anisotropic a posteriori error estimate for the adaptive conforming virtual element app...
We derive an anisotropic a posteriori error estimate for the adaptive conforming virtual element app...
We derive an anisotropic a posteriori error estimate for the adaptive conforming virtual element app...
We derive an anisotropic a posteriori error estimate for the adaptive conforming virtual element app...
An posteriori error analysis for the virtual element method (VEM) applied to general elliptic proble...
An a posteriori error analysis for the virtual element method (VEM) applied to general elliptic prob...
An a posteriori error analysis for the virtual element method (VEM) applied to general elliptic prob...
An a posteriori error analysis for the virtual element method (VEM) applied to general elliptic prob...
Abstract. A new anisotropic mesh adaptation strategy for finite element solution of elliptic differe...
An posteriori error analysis for the virtual element method (VEM) applied to general elliptic proble...
In recent years, the numerical treatment of boundary value problems with the help of polygonal and p...
In recent years, the numerical treatment of boundary value problems with the help of polygonal and p...
In recent years, the numerical treatment of boundary value problems with the help of polygonal and p...
In recent years, the numerical treatment of boundary value problems with the help of polygonal and p...
We derive an anisotropic a posteriori error estimate for the adaptive conforming virtual element app...
We derive an anisotropic a posteriori error estimate for the adaptive conforming virtual element app...
We derive an anisotropic a posteriori error estimate for the adaptive conforming virtual element app...
We derive an anisotropic a posteriori error estimate for the adaptive conforming virtual element app...
We derive an anisotropic a posteriori error estimate for the adaptive conforming virtual element app...
An posteriori error analysis for the virtual element method (VEM) applied to general elliptic proble...
An a posteriori error analysis for the virtual element method (VEM) applied to general elliptic prob...
An a posteriori error analysis for the virtual element method (VEM) applied to general elliptic prob...
An a posteriori error analysis for the virtual element method (VEM) applied to general elliptic prob...
Abstract. A new anisotropic mesh adaptation strategy for finite element solution of elliptic differe...
An posteriori error analysis for the virtual element method (VEM) applied to general elliptic proble...
In recent years, the numerical treatment of boundary value problems with the help of polygonal and p...
In recent years, the numerical treatment of boundary value problems with the help of polygonal and p...
In recent years, the numerical treatment of boundary value problems with the help of polygonal and p...
In recent years, the numerical treatment of boundary value problems with the help of polygonal and p...