An explicit and computable error estimator for the hp version of the virtual element method (VEM), together with lower and upper bounds with respect to the exact energy error, is presented. Such error estimator is employed to provide, following the approach of Melenk and Wohlmuth (Adv Comput Math 15(1–4):311–331, 2001), hp adaptive mesh refinements for very general polygonal meshes. In addition, a novel VEM hp Clément quasi-interpolant, instrumental for the a posteriori error analysis, is introduced. The performances of the adaptive method are validated by a number of numerical experiments.© The Author(s) 201
In this article, a recovery by compatibility in patches (RCP)-based a posteriori error estimator is...
In the present paper we initiate the challenging task of building a mathematically sound theory for ...
In the present paper we initiate the challenging task of building a mathematically sound theory for ...
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...
An posteriori error analysis for the virtual element method (VEM) applied to general elliptic proble...
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 ...
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...
In the present paper we initiate the challenging task of building a mathematically sound theory for ...
In the present paper we initiate the challenging task of building a mathematically sound theory for ...
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...
An posteriori error analysis for the virtual element method (VEM) applied to general elliptic proble...
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 ...
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...
In the present paper we initiate the challenging task of building a mathematically sound theory for ...
In the present paper we initiate the challenging task of building a mathematically sound theory for ...