Determining modes and fractal dimension of turbulent flows

Author:

Constantin P.,Foias C.,Manley O. P.,Temam R.

Abstract

Research on the abstract properties of the Navier–Stokes equations in three dimensions has cast a new light on the time-asymptotic approximate solutions of those equations. Here heuristic arguments, based on the rigorous results of that research, are used to show the intimate relationship between the sufficient number of degrees of freedom describing fluid flow and the bound on the fractal dimension of the Navier–Stokes attractor. In particular it is demonstrated how the conventional estimate of the number of degrees of freedom, based on purely physical and dimensional arguments, can be obtained from the properties of the Navier–Stokes equation. Also the Reynolds-number dependence of the sufficient number of degrees of freedom and of the dimension of the attractor in function space is elucidated.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference23 articles.

1. Pars L. A. 1965 A Treatise on Analytical Dynamics . Heineman.

2. Morse, P. M. & Feshbach H. 1953 Methods of Theoretical Physics .McGraw-Hill.

3. Frisch U. , Sulem, P.-L. & Nelkin M. 1978 J. Fluid Mech. 87,719.

4. Foias C. , Manley O. P. , Temam, R. & Treve, Y. M. 1983 Physica 9D,157.

5. Leib E. H. 1984 Commun. Math. Phys. 92,473.

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