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On the multifractal nature of fully developed turbulence and chaotic systems

Journal of Physics A Mathematical and General · 1984 · Vol. 17(18) · pp. 3521–3531
Roberto BenziG. PaladinGiorgio ParisiAngelo Vulpiani

Abstract

It is generally argued that the energy dissipation of three-dimensional turbulent flow is concentrated on a set with non-integer Hausdorff dimension. Recently, in order to explain experimental data, it has been proposed that this set does not possess a global dilatation invariance: it can be considered to be a multifractal set. The authors review the concept of multifractal sets in both turbulent flows and dynamical systems using a generalisation of the beta -model.

Complex Systems and Time Series AnalysisChaos control and synchronizationMathematical Dynamics and FractalsMultifractal systemTurbulenceStatistical physicsHausdorff dimensionFractalChaoticDynamical systems theoryDissipationMathematicsFractal dimension
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References
Generalized dimensions of strange attractors
Physics Letters A · 1983 · 988 citations
Characterization of Strange Attractors
Physical Review Letters · 1983 · 4,787 citations
<i>The Fractal Geometry of Nature</i>
American Journal of Physics · 1983 · 21,806 citations
A two-dimensional mapping with a strange attractor
Communications in Mathematical Physics · 1976 · 2,935 citations
Deterministic Nonperiodic Flow
Journal of the Atmospheric Sciences · 1963 · 19,069 citations
An introduction to probability theory and its applications
Journal of the Franklin Institute · 1958 · 29,713 citations
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