1994 Publications

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Conference Proceedings and Book Chapters

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[1] G. Bruneaux, K. Akselvoll, T. Poinsot, and J.H. Ferziger. Simulation of a turbulent flame in a channel. In Proceedings of the Summer Program, pages 157-174, Center for Turbulence Research, NASA Ames/Stanford University, USA, 1994.
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[2] I. D'Ast. Porting of a three-dimensional Navier-Stokes solver to a range of parallel computers and a network of workstations. In Verlag Springer, editor, High Performance Computing and Networking, pages 171-177, Munich, Germany, 1994.
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[3] C.B. Jenssen. Implicit multi block Euler and Navier Stokes calculations. In 32nd Aerospace Sciences Meeting and Exhibit, pages AIAA Paper 1994-0521, Reno, USA, 1994.
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[4] T. Poinsot. Direct simulation of turbulent combustion. In 4ème Ecole de Combustion, Collonges, France, 1994.
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[5] T. Poinsot. Using Direct Numerical Simulation to understand turbulent combustion. In 6th Joint EPS-APS Int. Conference on Physics Computing, Lugano, Italy, 1994.
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[6] T. Poinsot, T. Baritaud, S. Henriot, A. Torres, and A. Trouvé. Direct Numerical Simulation of turbulent combustion and implications for piston engine computations. In ECCOMAS 2nd CFD Conference, pages 113-122, Stuttgart, 1994. Wiley and Sons Ltd.
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[7] M. Rudgyard, T. Schoenfeld, R. Struijs, G. Audemar, and P. Leyland. A modular approach for computational fluid dynamics. In ECCOMAS 2nd European Computational Fluid Dynamics Conference, Stuttgart, Germany, 1994.
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[8] G. Ruetsch, D. Veynante, L. Vervisch, T. Poinsot, and A. Li nán. Triple flame structure and diffusion flame stabilization. In APS Meeting, Atlanta, 1994.
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[9] T. Schoenfeld. Automatic local grid refinement for vortical flow computations around delta wings. In N.P. Weatherill P.R. Eiseman, J. Hauser, and J.F. Thompson, editors, 4th International Conference on numerical grid generation, pages 589-602, Swansea, Wales, U.K., 1994. Elsevier Science Publishers, North Holland.
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[10] T. Schoenfeld and M. Rudgyard. A cell-vertex approach to local mesh refinement for the 3D Euler equations. In 32nd Aerospace Sciences Meeting and Exhibit, pages AIAA Paper 1994-0318, Reno, USA, 1994.
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[11] A. Stoessel and M. Baum. Direct Numerical Simulation of 2D turbulent combustion using domain decomposition methods. In 1994 SCS High Performance Computing Conference, La Jolla, USA, 1994.
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[12] A. Stoessel, M. Baum, and T. Poinsot. Towards 3D Direct Numerical Simulation of turbulent reactive flows. In Parallel CFD'94 conference, Kyoto, Japan, 1994.
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[13] A. Stoessel, M. Hilka, and M. Baum. 2D Direct Numerical Simulation of turbulent combustion on massively parallel processing platforms. In 1994 EUROSIM Conference, Delft, The Netherlands, 1994. IFP.
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[14] D. Veynante, L. Vervisch, T. Poinsot, A. Linán, and G. Ruetsch. Triple flame structure and diffusion flame stabilization. In Proceedings of the Summer Program, Center for Turbulence Research, NASA Ames/Stanford University, USA, 1994.
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Journal Publications

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[1] T. Baritaud, T. Poinsot, S. Henriot, A. Torres, G. Bruneaux, and D. Veynante. Modelling of combustion in si engines with the coherent flamelet model. ERCOFTAC Bulletin, 20:17-20, 1994.
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[2] M. Baum, D.C. Haworth, T. Poinsot, and N. Darabiha. Direct Numerical Simulation H2/O2/N2 flames with complex chemistry in two-dimensional turbulent flows. Journal of Fluid Mechanics, 281:1-32, 1994.
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[3] M. Baum, T. Poinsot, and D. Thévenin. Accurate boundary conditions for multicomponent reactive flows. Journal of Computational Physics, 116:247-261, 1994.
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[4] S. Candel, D. Veynante, F. Lacas, N. Darabiha, M. Baum, and T. Poinsot. A review of turbulent combustion modeling. ERCOFTAC Bulletin, 20:9-16, 1994.
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[5] B. Cuenot and T. Poinsot. Effects of curvature and unsteadiness in diffusion flames. implications for turbulent diffusion flames. Proc. of the Combustion Institute, 25:1383-1390, 1994.
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[6] G. Freskos and G. Penanhoat. Numerical simulation of the flow field around supersonic Air-intakes. Journal of Engineering for Gas Turbines and Power ASME Transactions, 116(1):116-123, 1994.
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[7] K.W. Morton, M. Rudgyard, and G.J. Shaw. Upwind iteration methods for the cell vortex scheme in one dimension. Journal of Computational Physics, 114(2):209-226, 1994.
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[8] M. Rieutord and A. Brandenburg. Reynolds stresses and differential rotation in boussinesq convection in a rotating spherical shell. Astronomy and Astrophysics, 286:471-480, 1994.
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[9] A. Trouvé and T. Poinsot. The evolution equation for the flame surface density in turbulent premixed combustion. Journal of Fluid Mechanics, 278:1-31, 1994.
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[10] I. Tuominen, A. Brandenburg, D. Moss, and M. Rieutord. Does the solar differential rotation arise from a large scale instability ? Astronomy and Astrophysics, 284:259-264, 1994.
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[11] D. Veynante, A. Trouvé, K.N.C. Bray, and T. Mantel. Rapport du Centre de Recherche sur la Combustion Turbulente, chapter Gradient and counter-gradient transport in turbulent premixed flames. CRCT, 1994.
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[12] A.P. Vincent and M. Meneguzzi. On the dynamics of vorticity tubes in homogeneous turbulence. Journal of Fluid Mechanics, 258:245, 1994.
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[13] S. Wüthrich, F. Perrel, M.L. Sawley, and A. Lafon. Hypersonic flow in chemical non equilibrium : A comparison of thin layer Navier-Stokes and coupled Euler /boundary layer computations. Computers and Fluids, 23(2):415-432, 1994.
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Thesis

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[1] F. Carbonnell. Etude de la prise en compte des effets instationnaires dans les simulations numériques (laminaire/ turbulent) - TH/CFD/94/18. PhD thesis, Institut National Polytechnique de Toulouse, 1994.
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[2] M. Manzini. Implicit parallel Navier-Stokes solvers -TH/CFD/94/01. PhD thesis, Institut National Polytechnique de Toulouse, France, 1994.
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Technical Reports

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[1] G. Brenner. Direct Numerical Simulation of compressible turbulence. Technical Report TR/CFD/94/12, CERFACS, November 15 1994.
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[2] A. Corjon and T. Poinsot. VORTEX : A complete tool to define aircraft separation due to Wake Vortex encounter. Technical Report TR/CFD/94/11, CERFACS, June 1994.
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[3] B. Cuenot and T. Poinsot. Rapport premiére année contrat DRET 92/160 : Combustion supersonique. Technical Report TR/CFD/94/09, CERFACS, September 1994.
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[4] T. Echekki, M. Baum, and T. Poinsot. A model for ignition in turbulent flows. Technical report, IFP, 1994.
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[5] M. Hilka, D. Veynante, T. Poinsot, and M. Baum. Direct simulation of pollutant formation in premixed turbulent CH4/O2/N2 flames. Technical report, EM2C, Ecole Centrale de Paris, 1994.
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[6] A. Kourta. Effets de la viscosité et du maillage sur le détachement tourbillonaire dans un moteur de fusée. Final Report FR/CFD/94/06, CERFACS, September 15 1994.
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[7] A. Kourta and H. Ha-Minh. L' impact de la turbulence sur l' aéroacoustique en aérodynamique interne des boosters. Final Report FR/CFD/94/05, CERFACS, September 15 1994.
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[8] F. Nicoud. Etude de faisabilité d'une Simulation Numérique Directe d'un écoulement avec forte injection pariétale. Technical Report TR/CFD/94/10, CERFACS, September 30 1994.
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[9] PARALLELAERO. ESPRIT Project 8421 - concept and benchmark plan deliverables RD3. Technical Report TR/CFD/94/01, CERFACS, June 9 1994.
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[10] T. Poinsot and J.R. Angilella. ESPRIT Project 9113 PARADISE - application 2: Deliverable 2. Technical Report TR/CFD/94/07, CERFACS, September 27 1994.
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[11] T. Poinsot and J.R. Angilella. ESPRIT Project 9113 PARADISE : Application 2. Technical Report TR/CFD/94/02, CERFACS, June 13 1994.
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[12] M. Rudgyard, T. Schoenfeld, R. Struijs, G. Audemar, and P. Leyland. A modular approach for computational fluid dynamics. Technical Report TR/CFD/95/07, CERFACS, 1994.
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[13] L. Tourrette, V. VanKemenade, and A. Ytterström. Esprit project 8421 PARALLELAERO : Proof of concept deliverable RD9. Technical Report TR/CFD/94/08, CERFACS, September 29 1994.
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[14] C. Weber. Validation and improvement of a Navier-Stokes Multi-Block solver. Technical Report TR/CFD/94/13, CERFACS, 1994.
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