
Computational Fluid Dynamics '96: Computational Fluid Dynamics '96 - Proceedings of the Third ECCOMAS Conference on Computational Fluid Dynamics v. 1
Jean-Antoine Desideri(Editor)
Wiley (Publisher)
Published on 29. August 1996
Book
Hardback
1128 pages
978-0-471-95851-2 (ISBN)
Description
The European Community on Computational Methods in Applied Science (ECCOMAS) has been created with the aim of providing a co-ordination of international scientific conferences and other activities in the field of computational methods in applied sciences. The main objective of the joint conferences on computational fluid dynamics and numerical methods in engineering is to provide a common forum for the presentation and discussion of scientific computing applied to engineering sciences. Equal emphasis is to be given to basic methodologies, scientific developments and industrial applications. These conferences are presented in three volumes. Volume one, "Computational Fluid Dynamics '96", covers the proceedings of the Third ECCOMAS Conference on Computational Fluid Dynamics; Volume two, "Numerical Methods in Engineering '96", covers the proceedings of the second ECCOMAS Conference on Numerical Methods in Engineering; and Volume three, "Computational Methods in Applied Sciences '96", which presents invited lectures and special technical sessions of both the Third ECCOMAS Computational Fluid Dynamics Conference and the Second ECCOMAS Conference on Numerical Methods in Engineering.
More details
Edition
Volume 1 ed.
Language
English
Place of publication
Chichester
United Kingdom
Publishing group
John Wiley and Sons Ltd
Target group
Professional and scholarly
Illustrations
illustrations
Dimensions
Height: 204 mm
Width: 167 mm
Weight
2800 gr
ISBN-13
978-0-471-95851-2 (9780471958512)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Content
Partial table of contents: ENVIRONMENTAL FLOWS. Global Semi-Lagrangian Atmospheric Model Based on Compact Finite Differences (M. Tolstykh). HIGH SPEED FLOWS 1. Numerical Prediction of Propagation of Waves in Non-Equilibrium Flows (F. Panni & M. Pandolfi). INCOMPRESSIBLE SOLVERS 1. Simulation of the Flow Past Multiple Spheres (P. Olsson & L. Fuchs). REACTIVE FLOWS. A Model for Fire Simulation in Landscapes (L. Ferragut, et al.). TURBULENCE AND BOUNDARY LAYERS. Near-Wall Reynolds-Stress 3D Transonic Flows Computation (I. Vallet & G. Gerolymos). LOW MACH FLOW SOLVERS. A Numerical Method for the Computation of Compressible Flows with Low Mach Number Regions (H. Bijl & P. Wesseling). High SPEED FLOWS 2. Comparision of Chemical Models for Reacting Air (P. Spazzini).