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Finite element methods for viscous incompressible flows : a guide to theory, practice, and algorithms

Author: Max D Gunzburger
Publisher: Boston : Academic Press, ©1989.
Series: Computer science and scientific computing.
Edition/Format:   Print book : EnglishView all editions and formats
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Additional Physical Format: Online version:
Gunzburger, Max D.
Finite element methods for viscous incompressible flows.
Boston : Academic Press, ©1989
(OCoLC)551646948
Online version:
Gunzburger, Max D.
Finite element methods for viscous incompressible flows.
Boston : Academic Press, ©1989
(OCoLC)607761207
Material Type: Internet resource
Document Type: Book, Internet Resource
All Authors / Contributors: Max D Gunzburger
ISBN: 0123073502 9780123073501
OCLC Number: 19321836
Notes: Includes indexes.
Description: xvii, 269 pages : illustrations ; 24 cm.
Contents: Part I: Discretizations of the primitive variable formulation. 1. A primitive variable formulation --
2. The finite element problem and the div-stability condition --
3. Finite element spaces --
4. Alternate weak forms, boundary conditions, and numerical integration --
5. Penalty methods --
Part II: Solution of the discrete equations. 6. Newton's method and other iterative methods --
7. Solving the linear systems --
8. Solution methods for large Reynolds numbers --
Part III: Time-dependent problems. 9. A weak formulation and spatial discretizations --
10. Time discretizations --
Part IV: The streamfunction-vorticity formulation. 11. Algorithms for the streamfunction-vorticity equations --
12. Solution techniques for multiply connected domains --
Part V: The streamfunction formulation. 13. Algoritms for determining streamfunction approximations --
Part VI: Eigenvalue problems connected with stability studies for viscous flows. 14. Energy stability analysis of viscous flows --
15. Linearized stability analysis of stationary viscous flows --
Part VII: Exterior problems. 16. Truncated domain-artificial boundary condition methods --
Part VIII: Nonlienear constitutive relations. 17. A Ladyzhenskaya model and algebraic turbulence models --
18. Bingham fluids --
Part IX: Electromagnetically or thermally coupled flows. 19. Flows of liquid metals --
20. The Boussinesq equations --
Part X: Remarks on some topics that have not been considered. 21. Problems, formulations, algorithms, and other issues that have not been considered.
Series Title: Computer science and scientific computing.
Responsibility: Max D. Gunzburger.
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An excellent guide and can be strongly recommended. --ZENTRALBLATI FUR MATHEMATIK Due to the style chosen, the book is easy to read and should also be accessible for engineers who want to know about Read more...

 
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