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On the approximation of K-digonalizable hyperbolic systems by finite elements. Applications to the Euler equations and to gaseous mixtures
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Symmetrization of conservation laws with entropy for high-temperature hypersonic computations
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Chalot, F.1
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Adaptive streamline diffusion finite element methods for stationary convection-diffusion problems
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K. Eriksson and C. Johnson, Adaptive streamline diffusion finite element methods for stationary convection-diffusion problems, Math. Comput., in press.
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Adaptive streamline diffusion finite element methods for compressible flow using conservation variables
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P. Hansbo and C. Johnson, Adaptive streamline diffusion finite element methods for compressible flow using conservation variables, Comput. Methods Appl. Mech. Engrg. 87 (1991) 267-280.
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A velocity-pressure streamline diffusion finite element method for the incompressible Navier-Stokes equations
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P. Hansbo and A. Szepessy, A velocity-pressure streamline diffusion finite element method for the incompressible Navier-Stokes equations, Comput. Methods Appl. Mech. Engrg. 84 (1990) 175-192.
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0026910144
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A data parallel finite element method for computational fluid dynamics on the Connection Machine system
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Z. Johan, T. J. R. Hughes, K. K. Mathur and S. L. Johnson, A data parallel finite element method for computational fluid dynamics on the Connection Machine system, Comput. Methods Appl. Mech. Engrg. 99 (1992) 113-134.
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0348119088
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The characteristic streamline diffusion finite element mehtod
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C. Johnson, The characteristic streamline diffusion finite element mehtod, Mat. Apl. Comput. 10 (1992), Proc. from Conf. on Innovative Finite Element Methods, Rio de Janeiro, December 1989.
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A new approach to algorithms for convection problems which are based on exact transport + projection
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Comput. Methods Appl. Mech. Engrg.
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84966232205
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On the convergence of shock-capturing streamline diffusion finite element methods for hyperbolic conservation laws
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A qualitative model for dynamic combustion
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A new finite element method for computational fluid dynamics: X. The compressible Euler and Navier-Stokes equations
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F. Shakib, T. J. R. Hughes and Z. Johan, A new finite element method for computational fluid dynamics: X. The compressible Euler and Navier-Stokes equations, Comput. Methods Appl. Mech. Engrg. 89 (1991) 141-219.
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