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Eighth International Conference on Numerical Methods in Fluid Dynamics: Proceedings of the Conference, Rheinisch-Westfälische Technische Hochschule Aachen, Germany, June 28 – July 2, 1982: Lecture Notes in Physics, cartea 170

Editat de E. Krause
en Limba Engleză Paperback – noi 1982

Din seria Lecture Notes in Physics

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Specificații

ISBN-13: 9783540119487
ISBN-10: 3540119485
Pagini: 588
Ilustrații: X, 575 p. 191 illus.
Dimensiuni: 170 x 244 x 31 mm
Greutate: 0.93 kg
Ediția:1982
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Lecture Notes in Physics

Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Research

Cuprins

Computational aerodynamics and design.- Numerical computations of explosions in gases.- Two-dimensional separated flows.- Numerical simulation of wall-bounded turbulent shear flows.- Shock capturing, fitting and recovery.- Flow simulation by discrete vortex method.- A grid interfacing zonal algorithm for three-dimensional transonic flows about aircraft configurations.- An accurate and efficient finite element Euler equation algorithm.- Numerical computation of large-scale fire-induced flows.- Simulation of the fluctuating field of a forced Jet.- Modeling of gasdynamic processes in neutron stars with phase transitions.- Adaptation of flux-corrected transport algorithms for Modelina blast waves.- A local-relaxation method for solving convection-diffusion equations.- A numerical treatment of two-dimensional flow in a branching channel.- Finite element least square method for solving full steady Euler equations in a plane nozzle.- Analysis of separated boundary-layer flows.- Numerical modelling of inviscid shocked flows of real gases.- An overrelaxation method for transonic flow calculations by Euler equations.- A Dorodnitsyn finite element boundary layer formulation.- Large eddy simulation of a turbulent wall-bounded shear layer with longitudinal curvature.- Mixed initial and boundary value problems: Upwind schemes and their application.- An Eulerian method for calculation of gas motion in a varying region.- Computation of inviscid transonic internal flow.- Random element method for numerical modeling of diffusional processes.- A high Reynolds number flow with closed streamlines.- Compressible swirling flow into a constant volume cylinder.- Techniques for efficient implementation of pseudo-spectral methods and comparisons with finite difference solutions of the Navier-Stokes equations.- Numerical simulation of the fluid flow in front of the scoop of a gas centrifuge.- Study of incompressible turbulent channel flow by large eddy simulation.- Numerical solution and boundary conditions for boundary layer like flows.- Relaxation solution of the full Euler equations.- Spectral simulations of laminar-turbulent transition in plane Poiseuille flow and comparison with experiments.- Transonic-flow computation using an explicit-implicit method.- Numerical modeling of viscous flows in approximation of full and simplified Navier-Stokes equations.- Numerical solution of transonic shear flows past thin bodies.- Transonic potential flow calculation about complex bodies by a technique of overlapping subdomains.- Calculation method for transonic separated flows over airfoils including spoiler effects.- On the use of several compact methods for the study of unsteady incompressible viscous flow for outer problems (II).- Mesh generation strategies for CFD on complex configurations.- A new numerical method for the simulation of three-dimensional flow in a pipe.- An implicit finite-volume method for solving the Euler equations.- Finite difference computation of pressure and wave-drag of slender bodies of revolution at transonic speeds with zero-lift.- Numerical solution of viscous flow in unbounded fluid.- A natural conservative flux difference splitting for the hyperbolic systems of gasdynamics.- Simulation of cylindrical Couette flow.- Solution-adaptive grid for the calculation of three-dimensional laminar and turbulent boundary layers.- Calculation of pressure statistics in turbulent free shear flows by direct numerical simulation.- An implicit finite difference method for chemical nonequilibrium flow through an axisymmetric supersonic nozzle.- Noniterativegrid generation using parabolic difference equations for fuselage-wing flow calculations.- The numerical calculation of rotating fluid flows at low Rossby numbers.- Numerical techniques for multidimensional modeling of shock-generated turbulence.- Adaptive curvilinear grids for large Reynolds number viscous flows.- Simulation of large turbulent vortex structures with the parabolic Navier-Stokes equations.- Unigrid projection method to solve the Euler equations for steady transonic flow.- Numerical solution of viscous flow around arbitrary airfoils in a straight cascade.- Numerical simulation of homogeneous anisotropic turbulence.- A composite velocity procedure for the incompressible Navier-Stokes equations.- On calculation accuracy in gas flow problems with shock type discontinuities.- Shock-fitted Euler solutions to shock-vortex interactions.- Euler solutions as limit of infinite Reynolds number for separation flows and flows with vortices.- Branching of Navier-Stokes equations in a spherical gap.- On the construction of adaptive algorithms for unsteady problems of gas dynamics in arbitrary coordinate systems.- Analytical tests for numerical methods in gas dynamics.- Discrete models of the kinetic Boltzman equation.- Application of a polynomial spline in higher-order accurate viscous-flow computations.- Flux-vector splitting for the Euler equations.- Numerical solution of the problem of supersonic flow past wings of arbitrary form with a detached shock wave.- Solution of three-dimensional time-dependent viscous flows.- A minimal residual method for transonic potential flows.- Application of two-point difference schemes to the conservative Euler equations for one-dimensional flows.- Numerical solution of the Euler equation for a compressible flow problem.- A high-resolution numerical technique for inviscid gas-dynamic problems with weak solutions.- Some new developments of the singularity-separating difference method.