arXiv · patt-sol/9305004
Spiral defect chaos in a model of Rayleigh-Benard convection
Abstract
A numerical solution of a generalized Swift-Hohenberg equation in two dimensions reveals the existence of a spatio-temporal chaotic state comprised of a large number of rotating spirals. This state is observed for a reduced Rayleigh number $ε=0.25$. The power spectrum of the state is isotropic, and the spatial correlation function decays exponentially, with an estimated decay length $ξ\approx 2.5 λ_{c}$, where $λ_{c}$ is the critical wavelength near the onset of convection. Our study suggests that this spiral defect state occurs for low Prandtl numbers and large aspect ratios.
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Hao-wen Xi, J. D. Gunton, Jorge Vinals. 1993-05-17. Spiral defect chaos in a model of Rayleigh-Benard convection. https://doi.org/10.1103/physrevlett.71.2030
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