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Axially Symmetric Vibrations of a Finite, Isotropic, Solid Circular Cylinder, immersed in an Acoustic Medium

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A frequency equation corresponding to the axially symmetric vibration of a finite, isotropic, solid circular cylinder immersed in an infinite, compressible, inviscid fluid has been derived and solved for the frequency range where three real values of the propagation constant exist for the same frequency parameter. Vibrations corresponding to these three propagation constants have been superimposed to satisfy the boundary conditions approximately at the flat surfaces of the cylinder. Aspect ratio curves for which resonance occurs have been drawn graphically. In order to get an idea of the validity of approximation, residual stresses and displacements at the flat ends have been evaluated and shown graphically for some particularly chosen frequency and aspect ratios. Vibration patterns and the fluid pressures have also been given for these cases.
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Document Type: Research Article

Publication date: January 1, 1967

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  • Acta Acustica united with Acustica, published together with the European Acoustics Association (EAA), is an international, peer-reviewed journal on acoustics. It publishes original articles on all subjects in the field of acoustics, such as general linear acoustics, nonlinear acoustics, macrosonics, flow acoustics, atmospheric sound, underwater sound, ultrasonics, physical acoustics, structural acoustics, noise control, active control, environmental noise, building acoustics, room acoustics, acoustic materials, acoustic signal processing, computational and numerical acoustics, hearing, audiology and psychoacoustics, speech, musical acoustics, electroacoustics, auditory quality of systems. It reports on original scientific research in acoustics and on engineering applications. The journal considers scientific papers, technical and applied papers, book reviews, short communications, doctoral thesis abstracts, etc. In irregular intervals also special issues and review articles are published.
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