A split least-squares characteristic mixed element method for nonlinear nonstationary convection–diffusion problem
DOI10.1080/00207160.2012.667086zbMath1255.65178OpenAlexW2018091194MaRDI QIDQ4903525
Publication date: 22 January 2013
Published in: International Journal of Computer Mathematics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1080/00207160.2012.667086
convergence analysismethod of characteristicsmixed finite elementnonlinear convection-diffusion problemsplit least-squares algorithm
Finite element, Rayleigh-Ritz and Galerkin methods for initial value and initial-boundary value problems involving PDEs (65M60) Numerical aspects of the method of characteristics for initial value and initial-boundary value problems involving PDEs (65M25) Error bounds for initial value and initial-boundary value problems involving PDEs (65M15)
Related Items (14)
Cites Work
- Unnamed Item
- A least-squares finite element method for the Helmholtz equation
- Quasi-least-squares finite element method for steady flow and heat transfer with system rotation
- A remark on least-squares mixed element methods for reaction-diffusion problems
- Two families of mixed finite elements for second order elliptic problems
- Mixed finite elements for second order elliptic problems in three variables
- Mixed finite elements in \(\mathbb{R}^3\)
- Semidiscrete least squares methods for linear convection-diffusion problem
- Least-squares methods for the velocity-pressure-stress formulation of the Stokes equations.
- Some least-squares Galerkin procedures for first-order time-dependent convection-diffusion system
- Split least-squares finite element methods for linear and nonlinear parabolic problems
- A least-squares finite element method for incompressible flow in stress-velocity-pressure version
- Numerical Methods for Convection-Dominated Diffusion Problems Based on Combining the Method of Characteristics with Finite Element or Finite Difference Procedures
- Semidiscrete least squares methods for linear hyperbolic systems
- A least‐squares finite element method for time‐dependent incompressible flows with thermal convection
- Least-Squares Mixed Finite Elements for Second-Order Elliptic Problems
- First-Order System Least Squares for Second-Order Partial Differential Equations: Part I
- Least-Squares Mixed Finite Element Methods for Non-Selfadjoint Elliptic Problems: II. Performance of Block-ILU Factorization Methods
- Analysis of least-squares mixed finite element methods for nonlinear nonstationary convection-diffusion problems
- A Subdomain–Galerkin/Least Squares Method for First-Order Elliptic Systems in the Plane
This page was built for publication: A split least-squares characteristic mixed element method for nonlinear nonstationary convection–diffusion problem