
Hydrodynamic Stability
Cambridge University Press
Published on 30. December 1982
Book
Paperback/Softback
539 pages
978-0-521-28980-1 (ISBN)
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Description
Hydrodynamic stability is of fundamental importance in fluid mechanics and is concerned with the problem of transition from laminar to turbulent flow. This book begins with a basic introduction to three major areas of the subject: thermal convection, rotating and curved flows, and parallel shear flows. There follows a comprehensive account of recent advances in the mathematical theory for parallel shear flows. A number of applications of the linear theory are discussed, including the effects of stratification and unsteadiness. The book concludes with a chapter describing some of the fundamental ideas involved in current work on nonlinear hydrodynamic stability. The emphasis throughout is on the ideas involved, the physical mechanisms, the methods used, and the results obtained, and, wherever possible, the theory is related to both experimental and numerical results. A distinctive feature of the book is the large number of problems it contains. These problems, for which hints and references are given, not only provide exercises for students but also provide many additional results in a concise form.
Reviews / Votes
'The work is undeniably of high scholarship, consummate accuracy and penetrating insight ... All specialists in stability theory will be happy that two such authorities have found the time, and spared so few pains, to produce a work of such excellence.' NatureMore details
Series
Language
English
Place of publication
Cambridge
United Kingdom
Target group
Professional and scholarly
College/higher education
Product notice
Paperback (trade)
Dimensions
Height: 213 mm
Width: 139 mm
Thickness: 36 mm
Weight
700 gr
ISBN-13
978-0-521-28980-1 (9780521289801)
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Schweitzer Classification
Other editions
New editions

P. G. Drazin | W. H. Reid
Hydrodynamic Stability
Book
08/2004
2nd Edition
Cambridge University Press
€96.70
Shipment within 15-20 days
Persons
Content
Preface; 1. Introduction; 2. Thermal instability; 3. Centrifugal instability; 4. Parallel shear flows; 5. Uniform asymptotic approximations; 6. Additional topics in linear stability theory; 7. Nonlinear stability; Appendix; Bibliography and indexes.