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High Accuracy Non-Centered Compact Difference Schemes for Fluid Dynamics
Applications: Andrei I. Tolstykh
World Scientific, 1994
ISBN 9810216688
Compact difference schemes yield higher-order accurate differences on
compact molecules. For example, the CUD-3 scheme gives third-order accuracy
for the finite-difference representation of du/dx using a three-point
molecule, thus requiring only a tri-diagonal inversion.
Shames, Irving H., "Mechanics of Fluids," 2nd Ed., 1982, McGraw Hill,
ISBN 0-07-056385-3
Langhaar, H.L., "Dimensional Analysis and Theory of Models," Wiley, NY,
1951
Theory and Numerical Modeling of Turbulent Gas-Particle Flows and Combustion
by Zhou Lixing
ISBN 0-8493-7721-8
CRC Press, 1993.
Parallel Computational Fluid Dynamics: Implementations and Results
Edited by Horst D. Simon
ISBN 0-262-19326-4
The MIT Press, 1992
Parallel Computational Fluid Dynamics '91
Edited by K.G. Reinsch, W. Schmidt, A. Ecer, J. Hauser and J. Periaux
ISBN 0-444-89363-6
Elsevier Science Publishers, 1991.
Tuncer Cebeci
Peter Bradshaw
1st ed. 1984/2nd ed. 1988
Physical and Computational Aspects of Convective Heat Transfer
Springer-Verlag
ISBN 0387120971 (Hardback)
ISBN 0387968210 (Paperback)
Tuncer Cebeci
Peter Bradshaw
1989
Solutions Manual and Computer Programs for
Physical and Computational Aspects of Convective Heat Transfer
Springer-Verlag
ISBN 0387968253 (Paperback)
Truesdell, C. (Clifford), 1919-
The kinematics of vorticity.
Bloomington, Indiana University Press, 1954.
xvii, 232 p. illus. 26 cm.
Indiana University publications. Science series, no. 19
Bibliography: p. 207-221.
Computational Moving Boundary Problems
M. Zerroukat and C.R. Chatwin
Research Studies Press Ltd. and also John Wiley & Sons, Inc.
ISBN 0 86380 168 4 (RSP)
0 471 95176 5 (Wiley)
Pub. Date 1994.
Numerical Simulation of Heat Transfer and Fluid Flow on a Personal Computer
Authors: Susumo Kotake and Kunio Hijikata
Elsevier, 1993
ISBN 0-444-89811-5 (Hardcover)
0-444-89812-3 (Paperback)
Volume n# 3, Transport Processes in Engineering
The version I saw came with two floppies containing all the codes
given in the book. One was for the PC and the other for the Macintosh.
The Dynamics and Thermodynamics of Compressible Fluid Flow
Ascher H. Shapiro
Wiley, 1953
ISBN 0 471 06691-5
Fluid Flow: A First Course in Fluid Mechanics, 2nd Edition
Sabersky, et al
MacMillan, 1971
Library of Congress Number 79-123887
Computational Fluid Dynamics
Bose, T. K.
Wiley, New York 1988
ISBN 0-470-20953-4
Computational fluid dynamics with moving boundaries
Wei Shyy, H. S. Udaykumar, Madhukar M. Rao and Richard W. Smith
Taylor & Francis, Washington, D.C., 1996.
ISBN 1-56032-458-9
Finite Difference Methods in Heat Transfer
M. Necati Ozisik (the O has an umlaut)
CRC Press, 1994
ISBN 0-8493-2491-2
Finite Element Methods for Navier-Stokes Equations: Theory and Algorithms
Vivette Girault and Pierre-Arnaud Raviart
Springer Velag, SCM 5, 1986
ISBN 0-387-15796-4
Noll, B.: Numerische Stroemungsmechanik
Springer 1993
ISBN 3-540-56712-7
Schoenung, B.E.: Numerische Stroemungsmechanik
Springer 1990
ISBN 3-540-53137-8 (Berlin)
ISBN 0-387-53137-8 (New York)
Conservative Finite-Difference Methods on General Grids,
Mikhail Shashkov
CRC Press, Boca Raton, Florida, 1995,
ISBN 0-8493-7375-1
Numerische Stroemungsmechanik
H. Oertel and E. Laurien
Springer, Berlin, 1995
ISBN-3-540-58596-9
The book is an introduction into the field of CFD covering
finite-difference, finite-volume, finite-element and spectral methods
for compressible and incompressible flows. The book is written in
German.
An Introduction to Computational Fluid Dynamics: The Finite Volume
Method, H. K. Versteeg and W. Malalasekera, Addison Wesley Longman
Limited, 1995, reprinted 1996, ISBN 0-582-21884-5
Mathematical Topics in Fluid Mechanics
Vol. 1 Incompressible Models
Pierre-Louis Lions
Clarendon Press, Oxford, 1996
ISBN 0 19 851487 5
Simulation and Modelling of Turbulent Flows
Thomas B. Gatski, M. Yousuff Hussaini, John L. Lumley, Eds.
Oxford University Press, 1996
ISBN 0 19 510643 1
"An Introduction to Computational Fluid Dynamics: The Finite Volume Method",
H.K. Versteeg and W. Malalasekera, Addison-Wesley Longman
Limited, 1995, Reprinted in 1996. ISBN 0-582-218845.
Introduction to Theoretical and Computational Fluid Dynamics
C. Pozrikidis
Oxford University Press, 1997
ISBN 0-19-509320-8
Computational Methods for fluid dynamics
Joel H. Ferziger and Milovan Peric
springer verlag, 1997 corrected 2nd printing
isbn 3-540-59434-5
Numerical methods for engineers and scientists
Joe D. Hoffman
McGraw-Hill, Inc. 1992
isbn: 0-07-029213-2
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Euler and Navier-Stokes Solvers Using Multi-Dimensional Upwind Schemes and
Multigrid Acceleration,
Notes on Numerical Fluid Mechanics, Vol. 57,
European Community Research in Aeronautics
(H. Deconinck and B. Koren, eds.),
Vieweg Verlag, Braunschweig (1997).
ISSN 0179-9614
ISBN 3-528-06957-0
Pages: 569, price: DM 248,--
Vieweg Publishing, P.O. Box 5829, D-65048 Wiesbaden, FRG.
Abstract:
The book contains results of two joined research projects, carried out in
the framework of the BRITE/EURAM Aeronautics R&D Programme of the European
Commission.
Industrial endorsers of the project were: Alenia, Aerospatiale,
British Aerospace, Dassault, Dornier Deutsche Aerospace and Fokker Aircraft.
Research partners in the project were: the Von Karman Institute for Fluid
Dynamics, the Free University of Brussels, the University of Bari, the Dutch
Centre for Mathematics and Computer Science, the Technical University of
Denmark and the Swedish Royal Institute of Technology. The first three
research partners mainly worked on multi-dimensional upwind techniques for
discretizing the compressible Euler and Navier-Stokes equations, the latter
three on (solution-adaptive) multigrid techniques for solving discrete systems
of above equations.
The book describes a nice set of modern CFD techniques.
Contents:
1. Compact cell vertex convection schemes on unstructured meshes: ------------
--------------------------------------------- H. Paillere and H. Deconinck.
2. Multidimensional upwind residual distribution schemes for
the 2D Euler equations: --------------------- H. Paillere and H. Deconinck.
3. Matrix distribution schemes for the system of Euler equations: ------------
---------------------------------------- E. van der Weide and H. Deconinck.
4. Multidimensional upwind schemes for the 3D Euler equations on
unstructured tetrahedral meshes ---------- A. Bonfiglioli and H. Deconinck.
5. A very efficient local-adaptive multigrid method based on
a simple-wave decomposition of the Euler equations: -----------------------
---------------- L.A. Catalano, P. De Palma, M. Napolitano and G. Pascazio.
6. Genuinely multidimensional upwind methods for accurate and
efficient solutions of compressible flows: --------------------------------
---------------- L.A. Catalano, P. De Palma, M. Napolitano and G. Pascazio.
7. A general analysis of 2D/3D multidimensional upwind convection schemes: ---
------------------------------------------ P. Van Ransbeeck and Ch. Hirsch.
8. Multidimensional upwind schemes for the Euler/Navier-Stokes equations on
structured grids: ------------------------ P. Van Ransbeeck and Ch. Hirsch.
9. Multidimensional upwind scheme for the pseudo-compressible
Euler equations: ------------------------------------------ J.A. Michelsen.
10. Local grid refinements for the Navier-Stokes equations based on
truncation error estimates: ---------------------------------- P. Ekstrand.
11. Multigrid for steady gas dynamics problems: -------------------------------
----- P.W. Hemker, B. Koren, W.M. Lioen, M. Nool and H.T.M. van der Maarel.
12. Improving Euler computations at low Mach numbers: -------------------------
------------------------------------------------- B. Koren and B. van Leer.
13. BASIS3, a data structure for 3-dimensional sparse grids: ------------------
-------------------------------------------- P.W. Hemker and P.M. de Zeeuw.
14. Finite volume multigrid for 3D-problems: --------------------- P.W. Hemker.
15. Multiple semi-coarsening techniques: ----------------------- P.M. de Zeeuw.
16. Semi-coarsening in three directions for Euler-flow computations in
three dimensions: ---------------- B. Koren, P.W. Hemker and P.M. de Zeeuw. |
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