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NASA NTRS · 19820028946

Chaotic behavior and fluid dynamics

Abstract

It is shown that while fluids are very complicated systems having many degrees of freedom, the basic mechanism underlying the observed chaotic behavior of fluid turbulence may not require the consideration of many degrees of freedom. Simple dynamical systems display erratic and chaotic behavior reminiscent of turbulence, the key to which is the 'sensitivity to initial conditions' introduced by Ruelle (1978). Simple models which are sensitive to initial data and have permitted workers to study chaotic behavior are described, with attention to the Lorenz equations, Landau's idea of a continuous transition to turbulence via an infinite cascade of bifurcations, and one-dimensional maps.

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BibTeXRIS

Yorke, J. A., Yorke, E. D.. 1981-01-01. Chaotic behavior and fluid dynamics. https://ntrs.nasa.gov/citations/19820028946

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