Eccentricity effects on acoustic radiation from a spherical source suspended within a thermoviscous fluid sphere
Acoustic radiation from a spherical source undergoing angularly periodic axisymmetric harmonic surface vibrations while eccentrically suspended within a thermoviscous fluid sphere, which is immersed in a viscous thermally conducting unbounded fluid medium, is analyzed in an exact fashion. The formul...
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Format: | Article |
Language: | English |
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2003-11.
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Online Access: | Get fulltext |
LEADER | 01531 am a22001333u 4500 | ||
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001 | 66673 | ||
042 | |a dc | ||
100 | 1 | 0 | |a Hasheminejad, S.M. |e author |
700 | 1 | 0 | |a Azarpeyvand, M. |e author |
245 | 0 | 0 | |a Eccentricity effects on acoustic radiation from a spherical source suspended within a thermoviscous fluid sphere |
260 | |c 2003-11. | ||
856 | |z Get fulltext |u https://eprints.soton.ac.uk/66673/1/66673.pdf | ||
520 | |a Acoustic radiation from a spherical source undergoing angularly periodic axisymmetric harmonic surface vibrations while eccentrically suspended within a thermoviscous fluid sphere, which is immersed in a viscous thermally conducting unbounded fluid medium, is analyzed in an exact fashion. The formulation uses the appropriate wave-harmonic field expansions along with the translational addition theorem for spherical wave functions and the relevant boundary conditions to develop a closed-form solution in form of infinite series. The analytical results are illustrated with a numerical example in which the vibrating source is eccentrically positioned within a chemical fluid sphere submerged in water. The modal acoustic radiation impedance load on the source and the radiated far-field pressure are evaluated and discussed for representative values of the parameters characterizing the system. The proposed model can lead to a better understanding of dynamic response of an underwater acoustic lens. It is equally applicable in miniature transducer analysis and design with applications in medical ultrasonics. | ||
655 | 7 | |a Article |