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Circumferential waves on an immersed, fluid-filled elastic cylindrical shell

Xueyang BaoDepartment of Mechanical Engineering, Auburn University, Auburn, Alabama 36849-5341P. K. RajuDepartment of Mechanical Engineering, Auburn University, Auburn, Alabama 36849-5341H. ÜberallDepartment of Physics, Catholic University of America, Washington, DC 20064
1999en
ABI

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The existence of various types of circumferential waves, both predominantly shell or fluid borne, and the repulsion of their dispersion curves is discussed here for an infinite, thin elastic, circular-cylindrical shell immersed in a fluid and filled with another fluid. The study is based on an analytic calculation of the partial-wave resonances in the acoustic scattering amplitude of a normally incident plane wave. A large number of cases of repulsion are found in the phase-velocity dispersion curves of the various types of circumferential waves due to the shell-fluid coupling.

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