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Titlebook: IUTAM Symposium on Hamiltonian Dynamics, Vortex Structures, Turbulence; Proceedings of the I Alexey V. Borisov,Valery V. Kozlov,Mikhail A.

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Nonintegrability and Fractional Kinetics Along Filamented Surfaces,to-hydrodynamics. Using the renormalization group approach we study transport of particles along such surfaces and show that the kinetics is superdiffusive. Other discussed features of the dynamics are Poincaré recurrences, stickiness of trajectories, and connection to dynamics in billiards.
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Vortex Kelvin Modes with Nonlinear Critical Layers,r centered on this singular point. Nonlinearity, however, is a more appropriate choice in applications where the Reynolds number is large. The associated theory is outlined in this paper and new solutions to the eigenvalue problem are presented.
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High-Dimensional Hamiltonian Dynamical Systems: Theory and Computational Realization for Theoreticargue that the framework of the geometrical theory of nonlinear dynamical systems is ideal for the development of such a program. In this paper we discuss recent theoretical and computational issues and results along these lines.
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Conference proceedings 2008 Turbulence (Moscow, 25-30 August 2006). The study of vortex motion is of great interest to fluid and gas dynamics: since all real flows are vortical in nature, applications of the vortex theory are extremely diverse, many of them (e.g. aircraft dynamics, atmospheric and ocean phenomena) being espec
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Two-Dimensional Turbulence on A Bounded Domain,he total angular momentum may occur, owing to breakdown of the organized central cell as a result of erosion by wall-induced vorticity filaments and the subsequent re-establishment of a cell (of either sign).
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,Phase Transitions to Superrotation in a Coupled Fluid—Rotating Sphere System,ergy cascade to large scales and angular momentum transfer. Exact solution of this model provides critical temperatures and amplitudes of the ground modes — superrotating solid body flows — in the BECondensed phase.
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