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TURBULENCE: The Legacy of A.N. Kolmogorov

TURBULENCE: The Legacy of A.N. Kolmogorov Hardcover - 1995

by Frisch, Uriel

  • Used
  • near fine
  • Hardcover
  • first

Description

Cambridge: Cambridge University Press, 1995. First Edition. Hardcover. Near fine/Near fine. A modern account of turbulence, one of the greatest challenges in physics. "Fully developed turbulence" is ubiquitous in both cosmic and natural environments, in engineering applications and in everyday life. Octavo: 296 p. Original black cloth binding, with gilt titles. A near fine copy in a near fine dust jacket with some light wear.
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Details

  • Title TURBULENCE: The Legacy of A.N. Kolmogorov
  • Author Frisch, Uriel
  • Binding Hardcover
  • Edition First Edition
  • Condition Used - Near Fine
  • Pages 312
  • Volumes 1
  • Language ENG
  • Publisher Cambridge University Press, Cambridge
  • Date 1995
  • Bookseller's Inventory # 74914
  • ISBN 9780521451031 / 0521451035
  • Weight 1.5 lbs (0.68 kg)
  • Dimensions 9.25 x 6.26 x 0.85 in (23.50 x 15.90 x 2.16 cm)
  • Library of Congress subjects Turbulence
  • Library of Congress Catalog Number 93042614
  • Dewey Decimal Code 532.052

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First line

In Chapter 41 of his Lectures on Physics, devoted to hydrodynamics and turbulence, Richard Feynman (1964) observes this: Often, people in some unjustified fear of physics say you can't write an equation for life.

From the rear cover

This textbook presents a modern account of turbulence, one of the greatest challenges in physics. The state-of-the-art is put into historical perspective five centuries after the first studies of Leonardo and half a century after the first attempt by A.N. Kolmogorov to predict the properties of flow at very high Reynolds numbers. Such "fully developed turbulence" is ubiquitous in both cosmical and natural environments, in engineering applications and in everyday life. First, a qualitative introduction is given to bring out the need for a probabilistic description of what is in essence a deterministic system. Kolmogorov's 1941 theory is presented in a novel fashion with emphasis on symmetries (including scaling transformations) which are broken by the mechanisms producing the turbulence and restored by the chaotic character of the cascade to small scales. Considerable material is devoted to intermittency, the clumpiness of small-scale activity, which has led to the development of fractal and multifractal models. Such models, pioneered by B. Mandelbrot, have applications in numerous fields besides turbulence (diffusion limited aggregation, solid-earth geophysics, attractors of dynamical systems, etc). The final chapter contains an introduction to analytic theories of the sort pioneered by R. Kraichnan, to the modern theory of eddy transport and renormalization and to recent developments in the statistical theory of two-dimensional turbulence. The book concludes with a guide to further reading. The intended readership for the book ranges from first-year graduate students in mathematics, physics, astrophysics, geosciences and engineering, to professional scientists and engineers.

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