1992 Publications

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Conference Proceedings and Book Chapters

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[1] D.P. Astruc and A.P. Vincent. The cone of vision : a new technique for interactive scientific vizualisation. In Verlag Springer, editor, Beitrage zur Graphischen Datenverarbeitung Graphics Modeling and Vizualisation in Science and Technology, Darmstadt, Germany, 1992.
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[2] M. Baum, T. Poinsot, and D.C. Haworth. Numerical simulation of turbulent premixed H2/O2/N2 flames with complex chemistry. In Proceedings of the Summer Program, pages 345-366, Center for Turbulence Research, NASA AMES, Stanford University, USA, 1992.
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[3] N. Bonneton, A. Kourta, and H. Ha-Minh. Simulation numérique de l'aérodynamique des écoulements compressibles internes et externes. In Congrès de Calcul Scientifique d' Analyse et de Simulation Numérique, Vittel, France, 1992.
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[4] N. Bonneton, A. Kourta, and H. Ha-Minh. Simulation numérique des structures organisées d un jet plan compressible. In Ecoulements tourbillonnaires et méthodes numériques, 1992.
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[5] M.E. Brachet, M. Meneguzzi, A.P. Vincent, H. Politano, and P.L. Sulem. Can three-dimensional ideal flows become singular in a finite time ? In NATO Workshop on Singularities in fluids, plasmas and optics, Heraklion, 1992.
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[6] A. Brandenburg, I. Procaccia, D. Segel, M. Manzini, and A.P. Vincent. Multifractality, near-singularities and the role of stretching in turbulence. In NATO ASI meeting, Cambridge, UK, 1992.
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[7] M. Braza. Numerical simulation and modelling of the transition in complex shear flows. In Ercoftac 3rd Summer School/Workshop, Toulouse, France, 1992.
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[8] G. Freskos and G. Penanhoat. Numerical simulation of the flow field around supersonic Air-intakes. In 37th International gas turbine and aeroengine congress, pages ASME paper 92-GT-206, Cologne, Allemagne, 1992.
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[9] H. Ha-Minh. The impact of turbulence modelling on numerical flow predictions. In 13th International conference on numerical methods in fluid dynamics,, Rome, Italy, 1992. CNR.
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[10] H. Ha-Minh. Unsteady turbulent flows : Modelling and numerical aspects. In 3rd ERCOFTAC summer school, CERFACS, Toulouse, 1992.
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[11] A. Lafon and F. Perrel. Contribution to problem III. In Abgrall R., Desideri J.A., Glowinski R., Mallet M., and Périaux J., editors, Workshop on hypersonic Flows for Reentry Problems, pages 201-211, Antibes, France, 1992. Springer Verlag.
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[12] M. Meneguzzi and A.P. Vincent. Dynamics of vortex tubes in three-dimensional turbulence. In NATO Advanced Research Workshop on Vortex flows and related numerical methods, Grenoble-St Pierre de Chartreuse, France, 1992.
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[13] F. Perrel and A. Lafon. Hypersonic viscous flow in chemical non equilibrium : Contribution to problem VI. In Abgrall R., Desideri J.A., Glowinski R., Mallet M., and Périaux J., editors, Workshop on Hypersonic Flows for Reentry Problems, pages 520-534, Antibes, France, 1992. Springer Verlag, Berlin.
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[14] F. Perrel and A. Lafon. Numerical simulation of hypersonic viscous flows in chemical non equilibrium. In Brunand R. and Chikhaoui A., editors, IUTAM Symposium - Aerothermochemistry of spacecraft and associated hypersonic flows, pages 202-207, Marseille, France, 1992.
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[15] T. Poinsot and D.C. Haworth. DNS and modelling of the interaction between turbulent premixed flames and walls. In Proceedings of the Summer Program, pages 307-324, Center for Turbulence Research, NASA Ames/Stanford University, USA, 1992.
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[16] M. Rieutord. The effect of coherent convective structures on the differential rotation of the sun. In GONG 1992 meeting, Boulder, Colorado, 1992.
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[17] M.A. Rudgyard. A comparison of multi-dimensional upwinding for cell-vertex schemes on triangular meshes. In Morton Baines and, editor, Numerical Methods for Fluid Dynamics, pages 557-564, University of Reading, England, 1992. Oxford Science.
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[18] A. Trouvé and T. Poinsot. DNS of turbulent premixed flames. In Proceedings of the Summer Program, Center for Turbulence Research, NASA Ames/Stanford University, USA, 1992.
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[19] A. Trouvé and T. Poinsot. The evolution equation for the flame surface density in turbulent premixed combustion. In Research Center for Turbulence, editor, Proceedings of the Summer Program, pages 325-344, Center for Turbulence Research, NASA Ames/Stanford University, USA, 1992.
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[20] A.P. Vincent, M. Meneguzzi, and J.D. Villasenor. The spatial structure of isotropic turbulence and the related three-dimensional graphics problems. In applications IMA volumes in mathematics and its, editors, Workshop on Chaotic Processes in the Geological Sciences, University of Minnesota (USA), June 11-15 1992.
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[21] P. Weinerfelt and T. Schoenfeld. An unstructured multi-block local grid refinement solver for the 3D Euler equations and its implementation on distributed memory computers. In 13th international conference on numerical methods in fluid dynamics, pages 230-234, Rome, Italy, 1992. Springer Verlag.
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Journal Publications

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[1] Y. Achdou, R. Glowinski, and O. Pironneau. Tuning the mesh of a mixed method for the stream function. Vorticity formulation of the Navier-Stokes equations. Numerical Mathematics, 63(2):145-163, 1992.
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[2] P. Boudier, S. Henriot, T. Poinsot, and T. Baritaud. A model for turbulent flame ignition and propagation in piston engines. Proc. of the Combustion Institute, 24:503, 1992.
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[3] M.E. Brachet, M. Meneguzzi, A.P. Vincent, H. Politano, and P.L. Sulem. Numerical evidence of smooth self-similar dynamics and possibility of subsequent collapse for three-dimensional ideal flows. Physics of Fluids A, 4:2845-2854, 1992.
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[4] A. Brandenburg, I. Procaccia, D. Segel, and A.P. Vincent. Fractal level sets and multifractal fields in direct simulations of turbulence. Physical Review A, 46(8):4819-4828, 1992.
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[5] M. Bristeau, R. Glowinski, L. Dutto, and G. Roge. Numerical Simulation of Unsteady Flows and Transition to Turbulence, chapter On recent numerical simulations of compressible Navier-Stokes flows, pages 444-472. Cambridge University Press, 1992.
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[6] T.J. Craft and B.E. Launder. A new model of wall reflection effects on the pressure strain correlation and its application to the turbulent impinging jet. AIAA Journal, 30(12):2970-2972, 1992.
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[7] E.J. Dean, Q.V. Dinh, R. Glowinski, J. He, T.W. Pan, and J. Periaux. Domain decomposition methods for partial differential equations, chapter Least squares / domain imbedding methods for Neumann problems: application to fluid dynamics, pages 451-475. SIAM, Philadelphia, USA, 1992.
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[8] B. Dubrulle and E. Knobloch. On the local stability of accretion disks. Astronomy and Astrophysics, 256:673-678, 1992.
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[9] B. Dubrulle and L. Valdettaro. Consequences of rotation in energetics of accretion disks. Astronomy and Astrophysics, 263:387-400, 1992.
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[10] T. Dupont, R. Glowinski, W. Kinton, and M. Wheeler. Finite elements in fluids, chapter Mixed finite element methods for time dependent problems: applications to control, pages 119-136. Hemisphere Publishing Corporation, Washington, 1992.
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[11] R. Glowinski. Boundary control and boundary variation, Lecture Notes in Control and Information, volume vol. 178, chapter Boundary controllability problems for the wave and heat equations, pages 221-237. Springer Verlag, Berlin, 1992.
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[12] R. Glowinski. Ensuring well-posedness by analogy: Stokes problem and boundary control for the wave equation. Journal of Computational Physics, 103(2):189-221, 1992.
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[13] R. Glowinski, P. LeTallec, M. Ravachol, and V. Tsikkinis. Finite elements in fluids, chapter Numerical solution of the Navier-Stokes equations modelling the flow of incompressible nonmiscible viscous fluids, pages 137-163. Hemisphere Publishing Corporation, Washington, 1992.
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[14] R. Glowinski and O. Pironneau. Finite elements methods for Navier-Stokes equations. Annual Review in Fluid Mechanics, vol.24:167-204, 1992.
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[15] D.C. Haworth and T. Poinsot. Numerical simulations of lewis number effects in turbulent premixed flames. Journal of Fluid Mechanics, 244:405-436, 1992.
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[16] A. Nordlund, R. Brandenburg, R. Jennings, M. Rieutord, J. Ruokolainen, R. Stein, and I. Tuominen. Dynamo action in stratified convection with overshoot. Astrophysical Journal, 392:647-652, 1992.
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[17] T. Poinsot, T. Echekki, and M.G. Mungal. A study of the laminar flame tip and implications for premixed turbulent combustion. Combustion Science and Technology, vol.81(1-3):45-73, 1992.
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[18] T. Poinsot and S. Lele. Boundary conditions for direct simulations of compressible viscous flows. Journal of Computational Physics, vol.101(1):104-129, 1992.
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[19] T. Poinsot, D. Veynante, B. Yip, A. Trouvé, J.-M. Samaniego, and S. Candel. Active control: an investigation method for combustion instabilities. J.Phys. III, July:1331-1357, 1992.
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[20] I. Procaccia, A. Brandenburg, M. Jensen, and A.P. Vincent. The fractal dimension of iso-vorticity structures in 3-dimensional turbulence. Europhysics Letters, 19:183-187, 1992.
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[21] M. Rieutord. Ekman circulation and the synchronization of binary stars. Astronomy and Astrophysics, vol.259:581-584, 1992.
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[22] T. Tezduyar, J. Liou, D. Ganjoo, M. Behr, and R. Glowinski. Finite elements in fluids, Vol 8, chapter Unsteady incompressible flow computations with the finite element method, pages 177-209. Hemisphere Publishing Corporation, Washington, 1992.
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[23] J. Villasenor and A.P. Vincent. An algorithm for space recognition and time-tracking of vorticity tubes in turbulence. C.V.G.I.P. : Image Understanding, 55(1):1-9, 1992.
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Thesis

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[1] G. Freskos. Physical aspects and numerical simulation of the flows in supersonic air-intakes - TH/CFD/92/01. PhD thesis, Institut National Polytechnique de Toulouse, France - Mécanique des Fluides, 1992.
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[2] L. Valdettaro. Simulations numériques d' écoulements magnétohydrodynamiques compressibles en géometrie sphérique. PhD thesis, Université Paul Sabatier de Toulouse III, Toulouse, France, 1992.
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Technical Reports

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[1] B. Cuenot. CHEMKIN : un code pour la cinétique chimique. Partners Report PR/RF/92/12, CERFACS, 1992.
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[2] L. Davidson. Calculation of the flow around the A-airfoil using an incompressible code based on simple and a two-layer k- e model. Technical Report TR/RF/92/73, CERFACS, 1992.
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[3] N. Dolez, B. Dubrulle, and J.P. Zahn. Non linear instability of viscous plane couette flow II. Two-dimensional numerical simulations. Technical report, 1992.
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[4] B. Dubrulle, J.-M. Chomaz, S. Kumar, and M. Rieutord. Hamiltonian Hopf bifurcation in giant accretion tori. Technical report, CERFACS, Toulouse, 1992.
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[5] G. Freskos and S. Undreiner. Stall prediction using an algebraic stress model. Technical Report Activity Report, CERFACS, 1992.
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[6] E. Gallezot. Prédiction de l'écoulement turbulent à basse vitesse autour d'un profil d'aile hypersustentée, à l'aide d'un code Navier-Stokes. Rapport de stage, CERFACS, June 1992.
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[7] A. Kourta and H. Ha-Minh. Phénomène de détachememt tourbillonnaire dans un moteur à propergol solide. Contract report, CNES/ONERA/CERFACS, 1992.
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[8] A. Page. Simulation numérique et analyses des structures cohérentes instationnaires. Rapport de stage dea, CERFACS, September 1992.
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[9] F. Pages. Simulation numérique du phénomène de détachement tourbillonnaire dans un moteur à propergol solide. Rapport de stage, CERFACS, June 1992.
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[10] F. Rubini, V. Taverne, and L. Valdettaro. Error analysis in spectral semi-implicit simulations. Technical report, CERFACS, 1992.
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[11] T. Schoenfeld. Local mesh enrichment for a block structured 3D Euler solver. Partners Report PR/RF/92/11, CERFACS, 1992.
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[12] L. Valdettaro, V. Taverne, and M. Meneguzzi. Semi-implicit method for the compressible MHD convection. Technical report, CERFACS, 1992.
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[13] J. Villasenor and A.P. Vincent. Vector field flight simulator, user's guide. Technical Report TR/IT/VI/92/68, CERFACS, 1992.
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[14] A.P. Vincent. A spectral algorithm for boussinesq convection on the connection machine. Technical Report Activity report, CERFACS-AHPRC, Toulouse, 1992.
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