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On Axially Symmetric Vibrations of Fluid Filled Poroelastic Spherical Shells 被引量:1
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作者 Syed Ahmed Shah Mohammed Tajuddin 《Open Journal of Acoustics》 2011年第2期15-26,共12页
Employing Biot’s theory of wave propagation in liquid saturated porous media, waves propagating in a hollow poroelastic closed spherical shell filled with fluid are studied. The frequency equation of axially symmetri... Employing Biot’s theory of wave propagation in liquid saturated porous media, waves propagating in a hollow poroelastic closed spherical shell filled with fluid are studied. The frequency equation of axially symmetric vibrations for a pervious and an impervious surface is obtained. Free vibrations of a closed spherical shell are studied as a particular case when the fluid is vanished. Frequency as a function of ratio of thickness to inner radius is computed in absence of dissipation for two types of poroelastic materials each for a pervious and an impervious surface. Results of previous works are obtained as a particular case of the present study. 展开更多
关键词 Biot’s Theory axially symmetric vibrations RADIAL vibrations Rotatory vibrations Spherical Shell Elastic FLUID Pervious SURFACE Impervious SURFACE Frequency
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Vibration Analysis of an Infinite Poroelastic Circular Cylindrical Shell Immersed in Fluid
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作者 Syed Ahmed Shah 《Open Journal of Acoustics》 2012年第2期86-93,共8页
The purpose of this paper is to study the effect of presence of fluid within and around a poroelastic circular cylindrical shell of infinite extent on axially symmetric vibrations. The frequency equation each for a pe... The purpose of this paper is to study the effect of presence of fluid within and around a poroelastic circular cylindrical shell of infinite extent on axially symmetric vibrations. The frequency equation each for a pervious and an impervious surface is obtained employing Biot’s theory. Radial vibrations and axially symmetric shear vibrations are uncoupled when the wavenumber is vanished. The propagation of axially symmetric shear vibrations is independent of presence of fluid within and around the poroelastic cylindrical shell while the radial vibrations are affected by the presence of fluid. The frequencies of radial vibrations and axially symmetric shear vibrations are the cut-off frequencies for the coupled motion of axially symmetric vibrations. The non-dimensional phase velocity as a function of ratio of thickness to wavelength is computed and presented graphically for two different types of poroelastic materials for thin poroelastic shell, thick poroelastic shell and poroelastic solid cylinder. 展开更多
关键词 Biot’s Theory axially symmetric vibrations RADIAL vibrations POROELASTIC Cylindrical Shell Pervious SURFACE Impervious SURFACE Phase Velocity CUT-OFF Frequency
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