A first-order hyperbolic framework for large strain computational solid dynamics: an upwind cell centred total Lagrangian scheme
DOI10.1002/NME.5293zbMATH Open1548.65185MaRDI QIDQ6565262
Jibran Haider, Antonio J. Gil, Javier Bonet, Chun Hean Lee
Publication date: 1 July 2024
Published in: International Journal for Numerical Methods in Engineering (Search for Journal in Brave)
Large-strain, rate-independent theories of plasticity (including nonlinear plasticity) (74C15) Packaged methods for numerical algorithms (65Y15) Finite volume methods for initial value and initial-boundary value problems involving PDEs (65M08)
Cites Work
- Title not available (Why is that?)
- Title not available (Why is that?)
- Title not available (Why is that?)
- An enhanced Immersed structural potential method for fluid-structure interaction
- A vertex centred finite volume Jameson-Schmidt-Turkel (JST) algorithm for a mixed conservation formulation in solid dynamics
- Angular momentum preserving cell-centered Lagrangian and Eulerian schemes on arbitrary grids
- Hybridizable discontinuous Galerkin methods for partial differential equations in continuum mechanics
- The Immersed Structural Potential Method for haemodynamic applications
- Discretization of hyperelasticity on unstructured mesh with a cell-centered Lagrangian scheme
- Discontinuous Galerkin solution of the Navier-Stokes equations on deformable domains
- Development of a stabilised Petrov-Galerkin formulation for conservation laws in Lagrangian fast solid dynamics
- A large strain finite volume method for orthotropic bodies with general material orientations
- A cell-centered Lagrangian hydrodynamics scheme on general unstructured meshes in arbitrary dimension
- A high-order cell-centered Lagrangian scheme for compressible fluid flows in two-dimensional cylindrical geometry
- On curl-preserving finite volume discretizations for shallow water equations
- BDF-like methods for nonlinear dynamic analysis
- Hourglass control in linear and nonlinear problems
- The effect of nonzero \(\bigtriangledown\cdot B\) on the numerical solution of the magnetohydrodynamic equations
- The discrete energy-momentum method. Conserving algorithms for nonlinear elastodynamics
- Computational methods in Lagrangian and Eulerian hydrocodes
- A second-order Godunov algorithm for two-dimensional solid mechanics
- Energy consistent algorithms for dynamic finite deformation plasticity
- Design of simple low order finite elements for large strain analysis of nearly incompressible solids
- Dynamic solid mechanics using finite volume methods
- The \(\nabla \cdot B=0\) constraint in shock-capturing magnetohydrodynamics codes
- Hyperbolic divergence cleaning for the MHD equations
- A stabilised Petrov-Galerkin formulation for linear tetrahedral elements in compressible, nearly incompressible and truly incompressible fast dynamics
- A first order hyperbolic framework for large strain computational solid dynamics. I: Total Lagrangian isothermal elasticity
- A computational framework for polyconvex large strain elasticity
- Multidimensional slope limiters for MUSCL-type finite volume schemes on unstructured grids
- A control volume procedure for solving the elastic stress-strain equations on an unstructured mesh
- A cell-centered Lagrangian Godunov-like method for solid dynamics
- A nominally second-order cell-centered Lagrangian scheme for simulating elastic-plastic flows on two-dimensional unstructured grids
- An upwind vertex centred finite volume solver for Lagrangian solid dynamics
- A finite volume method for incompressible linear elasticity
- A first order hyperbolic framework for large strain computational solid dynamics. II: Total Lagrangian compressible, nearly incompressible and truly incompressible elasticity
- Lagrangian gas dynamics in two dimensions and Lagrangian systems
- An averaged nodal deformation gradient linear tetrahedral element for large strain explicit dynamic applications
- A locking-free selective smoothed finite element method using tetrahedral and triangular elements with adaptive mesh rezoning for large deformation problems
- A simple, stable, and accurate linear tetrahedral finite element for transient, nearly, and fully incompressible solid dynamics: a dynamic variational multiscale approach
- A Time Integration Algorithm for Structural Dynamics With Improved Numerical Dissipation: The Generalized-α Method
- A higher-order Godunov method for modeling finite deformation in elastic-plastic solids
- A stabilized nodally integrated tetrahedral
- A Cell-Centered Lagrangian Scheme for Two-Dimensional Compressible Flow Problems
- A uniform nodal strain tetrahedron with isochoric stabilization
- A discrete geometric conservation law (DGCL) for a cell vertex finite-volume algorithm on moving domains
- Riemann Solvers and Numerical Methods for Fluid Dynamics
- Comparison of Hilber-Hughes-Taylor and Bossak ‘α-methods’ for the numerical integration of vibration equations
- Geometric Conservation Law and Its Application to Flow Computations on Moving Grids
- An alpha modification of Newmark's method
- One-Sided Difference Approximations for Nonlinear Conservation Laws
- A uniform strain hexahedron and quadrilateral with orthogonal hourglass control
- A vertex-based finite volume method applied to non-linear material problems in computational solid mechanics
- An energy–momentum conserving algorithm for non-linear hypoelastic constitutive models
- Application of the finite volume method and unstructured meshes to linear elasticity
- Node-based uniform strain elements for three-node triangular and four-node tetrahedral meshes
- Finite Volume Methods for Hyperbolic Problems
- An assessment of the average nodal volume formulation for the analysis of nearly incompressible solids under finite strains
- A finite volume procedure to solve elastic solid mechanics problems in three dimensions on an unstructured mesh
- Locally Divergence-preserving Upwind Finite Volume Schemes for Magnetohydrodynamic Equations
- Nonlinear Continuum Mechanics for Finite Element Analysis
- Über die partiellen Differenzengleichungen der mathematischen Physik.
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