## Finite Elements in Fluids, Volume 7Richard H. Gallagher, R. Glowinski, P. M. Gresho, J. Tinsley Oden, O. C. Zienkiewicz Vol. 1-2, 3, 5- contain, respectively, selected papers from the [1st] (1974), 2nd (1976), 4th (1982)- International Symposium on Finite Element Methods in Flow Problems; v. 4 contains selected papers from the 3rd (1980) International Conference on Finite Elements in Flow Problems (Publisher uses this name for all the above conferences); |

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### Contents

F Benkhaldoun INRIA SophiaAntipolis 06560 Valbonne France | 1 |

FORTIN Department of Mathematics Universite Laval | 47 |

R Lohner Berkeley Research Associates Springfield VA 22150 | 221 |

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accuracy algorithm analysis applied approximation boundary conditions calculations Chebyshev chemical coefficient collocation combustion component computational fluid dynamics conservation constant continuity equation convection convergence defined derived differential equations diffusion Dirichlet BC discontinuous discretization divergence-free domain eigenvalues error Euler equations finite difference finite element method flame floating point flow fluid dynamics formulation free surface Galerkin Galerkin method Glowinski gradient Gresho grid incompressible incompressible flows integration interpolation iteration J. T. Oden Lagrangian linear matrix Mech mesh momentum equation Navier-Stokes equations Neumann BC nodal node non-linear Numerical Methods numerical solution O. C. Zienkiewicz obtained one-dimensional operator Phys Poisson equation potential preconditioning problem procedure propagation R. H. Gallagher reaction Reference rezone satisfy scheme shock shown in Figure simulation solving spatial spectral methods stability step Stokes flow supersonic SUPG SWCT tangential Taylor-Galerkin technique temperature tensor time-dependent tracer transonic turbulent variables vector velocity field viscoelastic viscous wave zero Zienkiewicz