Adaptive Quadrilateral and Hexahedral Finite Element Methods with Hanging Nodes and Convergence Analysis

Authors

  • Xuying Zhao, Shipeng Mao & Zhong-Ci Shi

DOI:

https://doi.org/10.4208/jcm.1001-m3006

Keywords:

Finite element method, Adaptive algorithm, Hanging node, 1-irregular mesh, Convergence analysis.

Abstract

In this paper we study the convergence of adaptive finite element methods for the general non-affine equivalent quadrilateral and hexahedral elements on 1-irregular meshes with hanging nodes. Based on several basic ingredients, such as quasi-orthogonality, estimator reduction and Döfler marking strategy, convergence of the adaptive finite element methods for the general second-order elliptic partial equations is proved. Our analysis is effective for all conforming $Q_m$ elements which covers both the two- and three-dimensional cases in a unified fashion.

Published

2019-04-10

Issue

Section

Articles