Abstract
The behavior of an incompressible and nonviscous liquid with a free surface in a uniformly fast rotating infinitely long elastic circular cylinder is treated. The natural frequencies of the liquid in a rigid container, as well as the response of the liquid to forced rigid and elastic container wall excitations are presented. Furthermore, the determination of the hydroelastic spin-slosh problem is presented, since the elasticity of the spinning container wall may considerably influence the magnitude of the coupled frequencies of the liquid-structure system.
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