Two‐grid method for miscible displacement problem with dispersion by finite element method of characteristics
DOI10.1002/zamm.201900275OpenAlexW3087563522MaRDI QIDQ6202843
Publication date: 27 February 2024
Published in: ZAMM - Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1002/zamm.201900275
two-grid methodmixed finite elementcharacteristic finite element methodmiscible displacement problem
Basic methods in fluid mechanics (76Mxx) Numerical methods for partial differential equations, initial value and time-dependent initial-boundary value problems (65Mxx) Numerical methods for partial differential equations, boundary value problems (65Nxx)
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Superconvergence of a combined mixed finite element and discontinuous Galerkin method for a compressible miscible displacement problem
- Convergence analysis of an approximation of miscible displacement in porous media by mixed finite elements and a modified method of characteristics
- Two-grid method for two-dimensional nonlinear Schrödinger equation by mixed finite element method
- Two-grid method for compressible miscible displacement problem by CFEM-MFEM
- Two-grid finite element methods combined with Crank-Nicolson scheme for nonlinear Sobolev equations
- Two-grid method for miscible displacement problem by mixed finite element methods and finite element method of characteristics
- Numerical solution of a miscible displacement problem with dispersion term using a two-grid mixed finite element approach
- Economical cascadic multigrid method (ECMG)
- A two-grid characteristic finite volume element method for semilinear advection-dominated diffusion equations
- Global Estimates for Mixed Methods for Second Order Elliptic Equations
- A time-discretization procedure for a mixed finite element approximation of miscible displacement in porous media
- A Two-Grid Finite-Element Method for the Nonlinear Schrödinger Equation
- A two-grid discretization method for decoupling systems of partial differential equations
- Analysis of two-grid methods for reaction-diffusion equations by expanded mixed finite element methods
- The approximation of the pressure by a mixed method in the simulation of miscible displacement
- Finite Difference Methods for Two-Phase Incompressible Flow in Porous Media
- Galerkin Methods for Miscible Displacement Problems in Porous Media
- Numerical Methods for Convection-Dominated Diffusion Problems Based on Combining the Method of Characteristics with Finite Element or Finite Difference Procedures
- Expanded mixed finite element methods for linear second-order elliptic problems, I
- Mathematical Analysis for Reservoir Models
- A Novel Two-Grid Method for Semilinear Elliptic Equations
- A Two-Grid Finite Difference Scheme for Nonlinear Parabolic Equations
- Two-Level Method Based on Finite Element and Crank-Nicolson Extrapolation for the Time-Dependent Navier-Stokes Equations
- A two-grid method for expanded mixed finite-element solution of semilinear reaction-diffusion equations
- A two-grid discretization scheme for eigenvalue problems
- Two‐grid method for two‐dimensional nonlinear Schrödinger equation by finite element method
- Two-Grid Discretization Techniques for Linear and Nonlinear PDE<scp>s</scp>
- Two-grid methods for miscible displacement problem by Galerkin methods and mixed finite-element methods
- A two-grid finite element method for nonlinear parabolic integro-differential equations
- Two-Grid Method for Miscible Displacement Problem by Mixed Finite Element Methods and Mixed Finite Element Method of Characteristics
- Two-Grid Discretization Scheme for Nonlinear Reaction Diffusion Equation by Mixed Finite Element Methods
- A multilevel finite element method in space‐time for the Navier‐Stokes problem
This page was built for publication: Two‐grid method for miscible displacement problem with dispersion by finite element method of characteristics