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- W626637194 abstract "Abbreviated.Volume 1. Sessions: I. Algorithm. Multidimensional upwind schemes for scalar advection on tetrahedral meshes (G. Bourgois et al.). A study on the acceleration of numerical simulations with qualitative reasoning and fuzzy logic (K. Yamaoka, M. Yamamoto). II. Transition and Turbulence. Numerical model for turbulent diffusion flames with applications (X.S. Bai, L. Fuchs). Application of algebraic-RNG eddy viscosity model to simulation of transitional boundary layer flow (A. Yakhot et al.). III. Hypersonic Reacting Flows. Are similarity parameters relevant to experimental simulations in high enthalpy nozzle flows? (R. Abgrall, A. Merlo). Comparative study of inviscid and viscous hypersonic flows over an STS (W. Schroder, F. Mergler).IV. Incompressible Flows. A numerical investigation of flow around a square-section cylinder mounted with a splitter plate (N. Arai, S. Saitoh). The discretization of the 2D incompressible Navier-Stokes equations on a co-located grid (P. Wilders, W. Couzy). V. Two-Phase Flow and Combustion. Numerical simulation of the 3D turbulent flow around the combustor dome of an aircraft engine (G. Brun et al.). Three-dimensional overlapping grids for internal combustion engine geometries (J.Y. Tu, L. Fuchs). Volume II. VI. Internal Flows. A robust inverse inviscid method for airfoil design (P. Chaviaropoulos et al.). Application of Roe's method for the simulation of viscous flow in turbomachinery (T. Siikonen, H. Pan). VII. Compressive Flows. An improved finite element method for the solution of the compressible Euler and Navier-Stokes equations (G.S. Baruzzi et al.). Transonic flow computations using a modified SIMPLE code based on a collocated grid arrangement (G. Zhou, L. Davidson). VIII. Compressive Flows II. Implicit upwind-Euler solution algorithms for unstructured-grid applications (J.T. Batina). An innovative algorithm to accurately solve the Euler equations for rotary wing flow (S. Wagner, E. Kramer). IX. Grid Generation and Adaption. Numerical resolution on a massively parallel computer of a test problem in meteorology using a domain decomposition algorithm (J.-D. Benamou, Y. Brenier). X. Boundary Layers. A method of separation of variables for laminar channel flow solution (F. Al-Bender, H. Van Brussel). XI. Environment. A comparison of differential systems for smooth oceanographic flows (G.L. Browning et al.). XII. Non-newtonian Flows. Finite element method for the approximation of viscoelastic fluid flow with a differential constitutive law (J. Baranger, D. Sandri)." @default.
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- W626637194 date "1992-08-01" @default.
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- W626637194 title "Computational Fluid Dynamics '92: Proceedings of the First European Computational Fluid Dynamics Conference, 7-11 September 1992, Brussels, Belgium" @default.
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