An posteriori error analysis for the virtual element method (VEM) applied to general elliptic problems is presented. The resulting error estimator is of residual-type and applies on very general polygonal/polyhedral meshes. The estimator is fully computable as it relies only on quantities available from the VEM solution, namely its degrees of freedom and element-wise polynomial projection. Upper and lower bounds of the error estimator with respect to the VEM approximation error are proven. The error estimator is used to drive adaptive mesh refinement in a number of test problems. Mesh adaptation is particularly simple to implement since elements with consecutive co-planar edges/faces are allowed and, therefore, locally adapted meshes do not...
In this article, a recovery by compatibility in patches (RCP)-based a posteriori error estimator is ...
In this article, a recovery by compatibility in patches (RCP)-based a posteriori error estimator is ...
In this article, a recovery by compatibility in patches (RCP)-based a posteriori error estimator is ...
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...
An posteriori error analysis for the virtual element method (VEM) applied to general elliptic proble...
An explicit and computable error estimator for the hp version of the virtual element method (VEM), t...
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...
Some error analyses on virtual element methods (VEMs) including inverse inequalities, norm equivalen...
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...
In this article, a recovery by compatibility in patches (RCP)-based a posteriori error estimator is ...
In this article, a recovery by compatibility in patches (RCP)-based a posteriori error estimator is ...
In this article, a recovery by compatibility in patches (RCP)-based a posteriori error estimator is ...
In this article, a recovery by compatibility in patches (RCP)-based a posteriori error estimator is ...
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...
An posteriori error analysis for the virtual element method (VEM) applied to general elliptic proble...
An explicit and computable error estimator for the hp version of the virtual element method (VEM), t...
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...
Some error analyses on virtual element methods (VEMs) including inverse inequalities, norm equivalen...
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...
In this article, a recovery by compatibility in patches (RCP)-based a posteriori error estimator is ...
In this article, a recovery by compatibility in patches (RCP)-based a posteriori error estimator is ...
In this article, a recovery by compatibility in patches (RCP)-based a posteriori error estimator is ...
In this article, a recovery by compatibility in patches (RCP)-based a posteriori error estimator is ...