Dynamical Systems Approach to Turbulence

Dynamical Systems Approach to Turbulence

ISBN-10:
0521017947
ISBN-13:
9780521017947
Pub. Date:
08/22/2005
Publisher:
Cambridge University Press
ISBN-10:
0521017947
ISBN-13:
9780521017947
Pub. Date:
08/22/2005
Publisher:
Cambridge University Press
Dynamical Systems Approach to Turbulence

Dynamical Systems Approach to Turbulence

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Overview

In recent decades, turbulence has evolved into a very active field of theoretical physics. The origin of this development is the approach to turbulence from the point of view of deterministic dynamical systems, and this book shows how concepts developed for low dimensional chaotic systems are applied to turbulent states. This book centers around a number of important simplified models for turbulent behavior in systems ranging from fluid motion (classical turbulence) to chemical reactions and interfaces in disordered systems. The theory of fractals and multifractals now plays a major role in turbulence research, and turbulent states are being studied as important dynamical states of matter occurring also in systems outside the realm of hydrodynamics. The book contains simplified models of turbulent behavior, notably shell models, coupled map lattices, amplitude equations and interface models.

Product Details

ISBN-13: 9780521017947
Publisher: Cambridge University Press
Publication date: 08/22/2005
Series: Cambridge Nonlinear Science Series , #8
Edition description: Revised ed.
Pages: 372
Product dimensions: 6.70(w) x 9.60(h) x 1.00(d)

Table of Contents

Introduction; 1. Turbulence and dynamical systems; 2. Phenomenology of turbulence; 3. Reduced models for hydrodynamic turbulence; 4. Turbulence and coupled map lattices; 5. Turbulence in the complex Ginzburg-Landau equation; 6. Predictability in high-dimensional systems; 7. Dynamics of interfaces; 8. Lagrangian chaos; 9. Chaotic diffusion; Appendix A. Hopf bifurcation; Appendix B. Hamiltonian systems; Appendix C. Characteristic and generalised Lyapunov exponents; Appendix D. Convective instabilities; Appendix E. Generalised fractal dimensions and multifractals; Appendix F. Multiaffine fields; Appendix G. Reduction to a finite-dimensional dynamical system; Appendix H. Directed percolation.
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