The mathematics of finite elements and applications X : MAFELAP 1999
J. R. Whiteman
Abstract
J. R. Whiteman
Abstract
Selected papers: Preface. Fictitious domain methods for particulate flow in two and three dimensions (R. Glowinski et al.). Recent advances in adaptive modelling of heterogeneous media (J. Tinsley Oden, K. Vemaganti). Modelling and finite element analysis of applied polymer viscoelasticity problems (S. Shaw et al.). A viscoelastic hybrid shell finite element (A.R. Johnson). h-adaptive finite element methods for contact problems (P. Wriggers et al.). hp-finite element methods for hyperbolic problems (E. Suli et al.). Solving short wave problems using special finite elements - towards an adaptive approach (O. Laghrouche, P. Bettess). Finite element methods for fluid-structure vibration problems (A. Bermudez et al.). Analysis and numerics of strongly degenerate convection-diffusion problems modelling sedimentation-consolidation processes (R. Burger, K.H. Karlsen). Scientific computing tools for 3D magnetic field problems (M. Kuhn et al.). Duality based domain decomposition with adaptive natural coarse grid projectors for contact problems (Z. Dostal et al.). A multi-well problem for phase transformations (M.S. Kuczma). Advanced boundary element algorithms (C. Lage, C. Schwab). Boundary integral formulations for stokes flows in deforming regions (L.C. Wrobel et al.). A finite volume method for viscous compressible flows in low and high speed applications (J. Vierendeels et al.). On finite element methods for coupling eigenvalue problems (H. De Schepper, R. Van Keer). Mesh shape and anisotropic elements: theory and practice (T. Apel et al.). Recent trends in the computational modelling of continua and multi-fracturing solids (D.R.J. Owen et al.).
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Selected papers: Preface. Fictitious domain methods for particulate flow in two and three dimensions (R. Glowinski et al.). Recent advances in adaptive modelling of heterogeneous media (J. Tinsley Oden, K. Vemaganti). Modelling and finite element analysis of applied polymer viscoelasticity problems (S. Shaw et al.). A viscoelastic hybrid shell finite element (A.R. Johnson). h-adaptive finite element methods for contact problems (P. Wriggers et al.). hp-finite element methods for hyperbolic problems (E. Suli et al.). Solving short wave problems using special finite elements - towards an adaptive approach (O. Laghrouche, P. Bettess). Finite element methods for fluid-structure vibration problems (A. Bermudez et al.). Analysis and numerics of strongly degenerate convection-diffusion problems modelling sedimentation-consolidation processes (R. Burger, K.H. Karlsen). Scientific computing tools for 3D magnetic field problems (M. Kuhn et al.). Duality based domain decomposition with adaptive natural coarse grid projectors for contact problems (Z. Dostal et al.). A multi-well problem for phase transformations (M.S. Kuczma). Advanced boundary element algorithms (C. Lage, C. Schwab). Boundary integral formulations for stokes flows in deforming regions (L.C. Wrobel et al.). A finite volume method for viscous compressible flows in low and high speed applications (J. Vierendeels et al.). On finite element methods for coupling eigenvalue problems (H. De Schepper, R. Van Keer). Mesh shape and anisotropic elements: theory and practice (T. Apel et al.). Recent trends in the computational modelling of continua and multi-fracturing solids (D.R.J. Owen et al.).
Key concepts: Finite element method, Finite volume method, Mathematics, Domain decomposition methods, Extended finite element method, Geometry, Mixed finite element method, Mathematical analysis