Vorticity and turbulence
Author(s)
Bibliographic Information
Vorticity and turbulence
(Applied mathematical sciences, v. 103)
Springer, c1994
- : us
- : gw
Related Bibliography 1 items
Available at / 94 libraries
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Library, Research Institute for Mathematical Sciences, Kyoto University数研
: usCHO||13||494032567
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Institute of Materials and Systems for Sustainability, Nagoya University未来材料研
: us423.84||C41109388
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Hokkaido University, Faculty and Graduate School of Engineering図書
: usdc20:532.052/c4563570414003
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Hokkaido University, Library, Graduate School of Science, Faculty of Science and School of Science図書
: usdc20:532/c4562070305486
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Note
Includes bibliographical references and index
Description and Table of Contents
- Volume
-
: us ISBN 9780387941974
Description
This book provides an introduction to the theory of turbulence in fluids based on the representation of the flow by means of its vorticity field. It has long been understood that, at least in the case of incompressible flow, the vorticity representation is natural and physically transparent, yet the development of a theory of turbulence in this representation has been slow. The pioneering work of Onsager and of Joyce and Montgomery on the statistical mechanics of two-dimensional vortex systems has only recently been put on a firm mathematical footing, and the three-dimensional theory remains in parts speculative and even controversial. The first three chapters of the book contain a reasonably standard intro duction to homogeneous turbulence (the simplest case); a quick review of fluid mechanics is followed by a summary of the appropriate Fourier theory (more detailed than is customary in fluid mechanics) and by a summary of Kolmogorov's theory of the inertial range, slanted so as to dovetail with later vortex-based arguments. The possibility that the inertial spectrum is an equilibrium spectrum is raised.
- Volume
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: gw ISBN 9783540941972
Description
This is an introduction to turbulence in vortex systems, and to turbulence theory for incompressible flow described in terms of the vorticity field. It is the author's hope that by the end of the book the reader will believe that these subjects are identical, and constitute a special case of fairly standard statistical mechanics, with both equilibrium and non-equilibrium aspects. The author's main goal is to relate turbulence to statistical mechanics. The first three chapters of the book constitute a fairly standard introduction to homogeneous turbulence in incompressible flow; a quick review of fluid mechanics; a summary of the appropriate Fourier theory; and a summary of Kolmogorov's theory of the inertial range. The next four chapters present the statistical theory of vortex notion, and the vortex dynamics of turbulence. The book ends with the major conclusion that turbulence can no longer be viewed as incomprehensible.
by "Nielsen BookData"