Please use this identifier to cite or link to this item: https://repository.cihe.edu.hk/jspui/handle/cihe/2643
Title: On the chaotic instability of a nonsliding liquid-filled top with a small spheroidal base via Melnikov-Holmes-Marsden integrals
Author(s): Leung, Andrew Yee Tak 
Author(s): Kuang, J. L.
Meehan, P. A.
Issue Date: 2006
Publisher: Springer
Journal: Nonlinear Dynamics 
Volume: 46
Issue: 1-2
Start page: 113
End page: 147
Abstract: 
Chaotic orientations of a top containing a fluid filled cavity are investigated analytically and numerically under small perturbations. The top spins and rolls in nonsliding contact with a rough horizontal plane and the fluid in the ellipsoidal shaped cavity is considered to be ideal and describable by finite degrees of freedom. A Hamiltonian structure is established to facilitate the application of Melnikov-Holmes-Marsden (MHM) integrals. In particular, chaotic motion of the liquid-filled top is identified to be arisen from the transversal intersections between the stable and unstable manifolds of an approximated, disturbed flow of the liquid-filled top via the MHM integrals. The developed analytical criteria are crosschecked with numerical simulations via the 4th Runge-Kutta algorithms with adaptive time steps.
URI: https://repository.cihe.edu.hk/jspui/handle/cihe/2643
DOI: 10.1007/s11071-006-9019-y
CIHE Affiliated Publication: No
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