A parallel splitting-up method for partial differential equations and its applications to Navier-Stokes equations
DOI10.1051/m2an/1992260606731zbMath0756.65129OpenAlexW2463743923MaRDI QIDQ4015032
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Publication date: 22 October 1992
Published in: ESAIM: Mathematical Modelling and Numerical Analysis (Search for Journal in Brave)
Full work available at URL: https://eudml.org/doc/193681
finite element methodConvergencesplitting techniquefractional step methodsplitting-up methodquasilinear evolution equationsevolution Navier-Stokes equationslinear and nonlinear elliptic problems
Boundary value problems for second-order elliptic equations (35J25) Nonlinear boundary value problems for linear elliptic equations (35J65) Stability and convergence of numerical methods for boundary value problems involving PDEs (65N12) Finite element, Rayleigh-Ritz and Galerkin methods for boundary value problems involving PDEs (65N30) Navier-Stokes equations (35Q30) Parallel numerical computation (65Y05) Mesh generation, refinement, and adaptive methods for boundary value problems involving PDEs (65N50)
Related Items (35)
Cites Work
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- Sur l'approximation de la solution des équations de Navier-Stokes par la méthode des pas fractionnaires. I
- A parallel splitting up method and its application to Navier-Stokes equations
- The Numerical Solution of Parabolic and Elliptic Differential Equations
- On the Numerical Solution of Heat Conduction Problems in Two and Three Space Variables
- Finite Element Methods for Navier-Stokes Equations
- Viscosity splitting method for three dimensional Navier-Stokes equations
- Finite Element Approximation of the Nonstationary Navier–Stokes Problem. I. Regularity of Solutions and Second-Order Error Estimates for Spatial Discretization
- Parallel finite element splitting-up method for parabolic problems
- On Error Estimates of Projection Methods for Navier–Stokes Equations: First-Order Schemes
- Numerical Solution of the Navier-Stokes Equations
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