Deprecated: $wgMWOAuthSharedUserIDs=false is deprecated, set $wgMWOAuthSharedUserIDs=true, $wgMWOAuthSharedUserSource='local' instead [Called from MediaWiki\HookContainer\HookContainer::run in /var/www/html/w/includes/HookContainer/HookContainer.php at line 135] in /var/www/html/w/includes/Debug/MWDebug.php on line 372
scientific article; zbMATH DE number 7536512 - MaRDI portal

scientific article; zbMATH DE number 7536512

From MaRDI portal
Publication:5863813

zbMath1490.65242MaRDI QIDQ5863813

Christophe Le Potier

Publication date: 3 June 2022


Title: zbMATH Open Web Interface contents unavailable due to conflicting licenses.



Related Items (37)

Development of numerical methods to simulate the melting of a thermal protection systemA new nonlinear finite volume scheme preserving positivity for diffusion equationsMonotonic solution of heterogeneous anisotropic diffusion problemsA numerical framework for diffusion-controlled bimolecular-reactive systems to enforce maximum principles and the non-negative constraintA cell-centered nonlinear finite volume scheme preserving fully positivity for diffusion equationNon-linear multi-point flux approximation in the near-well regionMonotone corrections for generic cell-centered finite volume approximations of anisotropic diffusion equationsThe finite volume scheme preserving maximum principle for diffusion equations with discontinuous coefficientPiecewise Linear Transformation in Diffusive Flux DiscretizationsA cost-effective nonlinear extremum-preserving finite volume scheme for highly anisotropic diffusion on Cartesian grids, with application to radiation belt dynamicsConvergence of nonlinear finite volume schemes for heterogeneous anisotropic diffusion on general meshesUnnamed ItemA robust, interpolation‐free and monotone finite volume scheme for diffusion equations on arbitrary quadrilateral meshesA nonlinear convex combination in the construction of finite volume scheme satisfying maximum principleA Maximum-Principle-Preserving Finite Volume Scheme for Diffusion Problems on Distorted MeshesCell-centered nonlinear finite-volume methods for the heterogeneous anisotropic diffusion problemAn improved monotone finite volume scheme for diffusion equation on polygonal meshesComposite finite volume schemes for the diffusion equation on unstructured meshesExistence of solution of a finite volume scheme preserving maximum principle for diffusion equationsConstruction of Nonlinear Weighted Method for Finite Volume Schemes Preserving Maximum PrincipleAn anisotropic mesh adaptation method for the finite element solution of heterogeneous anisotropic diffusion problemsAn improvement of the two-point flux approximation scheme on polygonal meshesA fully implicit mimetic finite difference scheme for general purpose subsurface reservoir simulation with full tensor permeabilityA study on nonnegativity preservation in finite element approximation of Nagumo-type nonlinear differential equationsA vertex-centered finite volume scheme preserving the discrete maximum principle for anisotropic and discontinuous diffusion equationsUnnamed ItemTP or not TP, that is the questionA Nonlinear Finite Volume Element Method Satisfying Maximum Principle for Anisotropic Diffusion Problems on Arbitrary Triangular MeshesThe finite volume scheme preserving extremum principle for diffusion equations on polygonal meshesAccelerated non-linear finite volume method for diffusionA nonlinear correction and maximum principle for diffusion operators discretized using cell-centered finite volume schemesSign-preserving of principal eigenfunctions in P1 finite element approximation of eigenvalue problems of second-order elliptic operatorsMaximum principle in linear finite element approximations of anisotropic diffusion-convection-reaction problemsA new multipoint flux approximation method with a quasi-local stencil (MPFA-QL) for the simulation of diffusion problems in anisotropic and heterogeneous mediaAnalysis of the nonlinear scheme preserving the maximum principle for the anisotropic diffusion equation on distorted meshesA multipoint flux approximation with a diamond stencil and a non-linear defect correction strategy for the numerical solution of steady state diffusion problems in heterogeneous and anisotropic media satisfying the discrete maximum principleThe Corrected Finite Volume Element Methods for Diffusion Equations Satisfying Discrete Extremum Principle



Cites Work


This page was built for publication: