Dual-mixed \(hp\)-version axisymmetric shell finite element using NURBS mid-surface interpolation
From MaRDI portal
Publication:776664
DOI10.1007/s00707-020-02661-3zbMath1436.74041OpenAlexW3014966595MaRDI QIDQ776664
Balázs Tóth, Dániel Burmeister
Publication date: 10 July 2020
Published in: Acta Mechanica (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00707-020-02661-3
Classical linear elasticity (74B05) Finite element methods applied to problems in solid mechanics (74S05) Shells (74K25)
Related Items (1)
Cites Work
- Derivation of a dual-mixed \(hp\)-finite element model for axisymmetrically loaded cylindrical shells
- Comparison of dual-mixed \(h\)- and \(p\)-version finite element models for axisymmetric problems of cylindrical shells
- Discontinuous Petrov-Galerkin method with optimal test functions for thin-body problems in solid mechanics
- Singularities in shell theory: anisotropic error estimates and numerical simulations
- Mixed \(hp\)-finite element method for linear elasticity with weakly imposed symmetry
- Analysis of anisotropic gradient elastic shear deformable plates
- High-order finite elements for shells
- Multi-field dual-mixed variational principles using non-symmetric stress field in linear elastodynamics
- Finite cell method. \(h\)- and \(p\)-extension for embedded domain problems in solid mechanics
- A family of mixed finite elements for the elasticity problem
- Dual and mixed nonsymmetric stress-based variational formulations for coupled thermoelastodynamics with second sound effect
- A posteriori error control and adaptivity of \(hp\)-finite elements for mixed and mixed-hybrid methods
- Coupled variational formulations of linear elasticity and the DPG methodology
- Stable \(hp\) mixed finite elements based on the Hellinger--Reissner principle
- The discontinuous Petrov-Galerkin method for elliptic problems
- On consistent plate theories
- A regularized dual mixed element for plane elasticity. Implementation and performance of the BDM element
- Improved nine-node shell element MITC9i with reduced distortion sensitivity
- A nodal integration axisymmetric thin shell model using linear interpolation
- Variational approach to dynamic analysis of third-order shear deformable plates within gradient elasticity
- Benchmark computations on point-loaded shallow shells: Fourier vs. FEM
- Error indicators for mixed finite elements in 2-dimensional linear elasticity
- Approximation of shell layers using bilinear elements on anisotropically refined rectangular meshes
- Benchmark Computations of Stresses in a Spherical Dome with Shell Finite Elements
- Dual-mixed hp finite element model for elastic cylindrical shells
- Two improvements in formulation of nine-node element MITC9
- Introduction to Finite Element Analysis
- TANGENTIAL-DISPLACEMENT AND NORMAL–NORMAL-STRESS CONTINUOUS MIXED FINITE ELEMENTS FOR ELASTICITY
- A robust non-linear mixed hybrid quadrilateral shell element
- A new elasticity element made for enforcing weak stress symmetry
- Mixed finite element methods for linear elasticity with weakly imposed symmetry
- A formulation of general shell elements—the use of mixed interpolation of tensorial components
- Homogenization of a second order plate model
- Modeling of consistent second‐order plate theories for anisotropic materials
- Computing with hp-ADAPTIVE FINITE ELEMENTS
- A stabilized one‐point integrated quadrilateral Reissner–Mindlin plate element
- RECTANGULAR MIXED FINITE ELEMENTS FOR ELASTICITY
- Fourier mode analysis of layers in shallow shell deformations
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
This page was built for publication: Dual-mixed \(hp\)-version axisymmetric shell finite element using NURBS mid-surface interpolation