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Finite Volumes for Complex Applications VI   Problems & Perspectives - FVCA 6, International Symposium, Prague, June 6-10, 2011... Finite Volumes for Complex Applications VI Problems & Perspectives - FVCA 6, International Symposium, Prague, June 6-10, 2011 (Hardcover, 2011 ed.)
Jaroslav Fort, Jiri Furst, Jan Halama, Raphaele Herbin, Florence Hubert
R6,729 R4,475 Discovery Miles 44 750 Save R2,254 (33%) Ships in 12 - 17 working days

Finite volume methods are used for various applications in fluid dynamics, magnetohydrodynamics, structural analysis or nuclear physics. A closer look reveals many interesting phenomena and mathematical or numerical difficulties, such as true error analysis and adaptivity, modelling of multi-phase phenomena or fitting problems, stiff terms in convection/diffusion equations and sources. To overcome existing problems and to find solution methods for future applications requires many efforts and always new developments. The goal of The International Symposium on Finite Volumes for Complex Applications VI is to bring together mathematicians, physicists and engineers dealing with Finite Volume Techniques in a wide context. This book, divided in two volumes, brings a critical look at the subject (new ideas, limits or drawbacks of methods, theoretical as well as applied topics).

The Gradient Discretisation Method (Paperback, 1st ed. 2018): Jerome Droniou, Robert Eymard, Thierry Gallouet, Cindy Guichard,... The Gradient Discretisation Method (Paperback, 1st ed. 2018)
Jerome Droniou, Robert Eymard, Thierry Gallouet, Cindy Guichard, Raphaele Herbin
R1,776 Discovery Miles 17 760 Ships in 10 - 15 working days

This monograph presents the Gradient Discretisation Method (GDM), which is a unified convergence analysis framework for numerical methods for elliptic and parabolic partial differential equations. The results obtained by the GDM cover both stationary and transient models; error estimates are provided for linear (and some non-linear) equations, and convergence is established for a wide range of fully non-linear models (e.g. Leray-Lions equations and degenerate parabolic equations such as the Stefan or Richards models). The GDM applies to a diverse range of methods, both classical (conforming, non-conforming, mixed finite elements, discontinuous Galerkin) and modern (mimetic finite differences, hybrid and mixed finite volume, MPFA-O finite volume), some of which can be built on very general meshes.

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