

Author: Oie S. Takeuchi R.
Publisher: S. Hirzel Verlag
ISSN: 1610-1928
Source: Acta Acustica united with Acustica, Vol.45, Iss.2, 1980-06, pp. : 87-95
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Abstract
The sound field radiated from a surface of porous material vibrating uniformly is theoretically analyzed. We adopt a capillary tube model as an analytical model of the porous material to calculate the interactive effects between the fluid in the pores and the solid frame of the porous material in motion. The radiated field is obtained by solving the boundary value problem in a whole space including the internal region of the vibrating porous material and the external region where the sound waves are radiated. The efficiency coefficients of radiation and the sound absorption coefficients of the porous material in a few examples of a one-dimensional problem are numerically calculated and their frequency responses are presented graphically.
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