Introduction to hydrodynamic stability:
Instability of flows and their transition to turbulence are widespread phenomena in engineering and the natural environment, and are important in applied mathematics, astrophysics, biology, geophysics, meteorology, oceanography and physics as well as engineering. This is a textbook to introduce thes...
Gespeichert in:
Beteilige Person: | |
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Format: | E-Book |
Sprache: | Englisch |
Veröffentlicht: |
Cambridge
Cambridge University Press
2002
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Schriftenreihe: | Cambridge texts in applied mathematics
32 |
Links: | https://doi.org/10.1017/CBO9780511809064 |
Zusammenfassung: | Instability of flows and their transition to turbulence are widespread phenomena in engineering and the natural environment, and are important in applied mathematics, astrophysics, biology, geophysics, meteorology, oceanography and physics as well as engineering. This is a textbook to introduce these phenomena at a level suitable for a graduate course, by modelling them mathematically, and describing numerical simulations and laboratory experiments. The visualization of instabilities is emphasized, with many figures, and in references to more still and moving pictures. The relation of chaos to transition is discussed at length. Many worked examples and exercises for students illustrate the ideas of the text. Readers are assumed to be fluent in linear algebra, advanced calculus, elementary theory of ordinary differential equations, complex variables and the elements of fluid mechanics. The book is aimed at graduate students but will also be very useful for specialists in other fields. |
Umfang: | 1 Online-Ressource (xvii, 258 Seiten) |
ISBN: | 9780511809064 |
Internformat
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520 | |a Instability of flows and their transition to turbulence are widespread phenomena in engineering and the natural environment, and are important in applied mathematics, astrophysics, biology, geophysics, meteorology, oceanography and physics as well as engineering. This is a textbook to introduce these phenomena at a level suitable for a graduate course, by modelling them mathematically, and describing numerical simulations and laboratory experiments. The visualization of instabilities is emphasized, with many figures, and in references to more still and moving pictures. The relation of chaos to transition is discussed at length. Many worked examples and exercises for students illustrate the ideas of the text. Readers are assumed to be fluent in linear algebra, advanced calculus, elementary theory of ordinary differential equations, complex variables and the elements of fluid mechanics. The book is aimed at graduate students but will also be very useful for specialists in other fields. | ||
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spelling | Drazin, P. G. Introduction to hydrodynamic stability P.G. Drazin Cambridge Cambridge University Press 2002 1 Online-Ressource (xvii, 258 Seiten) txt c cr Cambridge texts in applied mathematics 32 Instability of flows and their transition to turbulence are widespread phenomena in engineering and the natural environment, and are important in applied mathematics, astrophysics, biology, geophysics, meteorology, oceanography and physics as well as engineering. This is a textbook to introduce these phenomena at a level suitable for a graduate course, by modelling them mathematically, and describing numerical simulations and laboratory experiments. The visualization of instabilities is emphasized, with many figures, and in references to more still and moving pictures. The relation of chaos to transition is discussed at length. Many worked examples and exercises for students illustrate the ideas of the text. Readers are assumed to be fluent in linear algebra, advanced calculus, elementary theory of ordinary differential equations, complex variables and the elements of fluid mechanics. The book is aimed at graduate students but will also be very useful for specialists in other fields. Erscheint auch als Druck-Ausgabe 9780521009652 Erscheint auch als Druck-Ausgabe 9780521804271 |
spellingShingle | Drazin, P. G. Introduction to hydrodynamic stability |
title | Introduction to hydrodynamic stability |
title_auth | Introduction to hydrodynamic stability |
title_exact_search | Introduction to hydrodynamic stability |
title_full | Introduction to hydrodynamic stability P.G. Drazin |
title_fullStr | Introduction to hydrodynamic stability P.G. Drazin |
title_full_unstemmed | Introduction to hydrodynamic stability P.G. Drazin |
title_short | Introduction to hydrodynamic stability |
title_sort | introduction to hydrodynamic stability |
work_keys_str_mv | AT drazinpg introductiontohydrodynamicstability |