Abstract
Spatiotemporal intermittency manifests itself by the coexistence of laminar and turbulent domains for the same value of the control parameter. In the Taylor- Dean system, the distributions of laminar domains size after algebraic and exponential regimes allow for a determination of critical properties in an analogy with directed percolation. In the Couette-Taylor system, only algebraic distribution of laminar domains size has been evidenced. A turbulent spiral coexists with laminar spiral destroying the occurrence of exponential regime.
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Mutabazi, I., Goharzadeh, A., Laure, P. (2000). Spatiotemporal intermittency in Taylor-Dean and Couette-Taylor systems. In: Egbers, C., Pfister, G. (eds) Physics of Rotating Fluids. Lecture Notes in Physics, vol 549. Springer, Berlin, Heidelberg. https://doi.org/10.1007/3-540-45549-3_7
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DOI: https://doi.org/10.1007/3-540-45549-3_7
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