Rayleigh Ritz approach for predicting the acoustic performance of lined rectangular plenum chambers
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[1] F. P. Mechel. Design charts for sound absorber layers , 1988 .
[2] A. Cummings,et al. The attenuation of lined plenum chambers in ducts: I. Theoretical models , 1978 .
[3] R. J. Astley,et al. A finite element scheme for attenuation in ducts lined with porous material: Comparison with experiment , 1987 .
[4] J. Ih,et al. ON THE MULTIPLE MICROPHONE METHOD FOR MEASURING IN-DUCT ACOUSTIC PROPERTIES IN THE PRESENCE OF MEAN FLOW , 1998 .
[5] A. Cummings. A segmented Rayleigh-Ritz method for predicting sound transmission in a dissipative exhaust silencer of arbitrary cross-section , 1995 .
[6] The effects of flanking transmission on sound attenuation in lined ducts , 1995 .
[7] Ragnar Glav,et al. The transfer matrix for a dissipative silencer of arbitrary cross-section , 2000 .
[8] K. S. Peat,et al. A TRANSFER MATRIX FOR AN ABSORPTION SILENCER ELEMENT , 1991 .
[9] Leonard Meirovitch,et al. Convergence of the classical Rayleigh-Ritz method and the finite element method , 1990 .
[10] Jeong-Guon Ih. The reactive attenuation of rectangular plenum chambers , 1992 .
[11] Jeong-Guon Ih,et al. Analysis of higher-order mode effects in the circular expansion chamber with mean flow , 1985 .
[12] Leo L. Beranek,et al. Acoustical Properties of Homogeneous, Isotropic Rigid Tiles and Flexible Blankets , 1947 .
[13] S K Kakoty,et al. Bulk reaction modeling of ducts with and without mean flow. , 2002, The Journal of the Acoustical Society of America.
[14] Mats Åbom,et al. Derivation of four-pole parameters including higher order mode effects for expansion chamber mufflers with extended inlet and outlet , 1990 .
[15] A. Cummings. Sound transmission in a folded annular duct , 1975 .
[16] S. N. Panigrahi,et al. Comparison of various methods for analyzing lined circular ducts , 2005 .
[17] E. N. Bazley,et al. Acoustical properties of fibrous absorbent materials , 1970 .
[18] A. Cummings,et al. Sound attenuation of a finite length dissipative flow duct silencer with internal mean flow in the absorbent , 1988 .
[19] W. Soedel,et al. Development of a General Procedure to Formulate Four Pole Parameters by Modal Expansion and Its Application to Three-Dimensional Cavities , 1990 .
[20] Jeong-Guon Ih,et al. Theoretical prediction of the transmission loss of circular reversing chamber mufflers , 1987 .
[21] Jeong-Guon Ih,et al. LOW-FREQUENCY CHARACTERISTICS OF UNLINED END-IN SIDE-OUT RECTANGULAR PLENUM CHAMBERS , 1993 .
[22] R. Kirby,et al. A point collocation approach to modelling large dissipative silencers , 2005 .
[23] R A Scott,et al. The propagation of sound between walls of porous material , 1946 .
[24] K. S. Peat,et al. A finite element analysis of the convected acoustic wave motion in dissipative silencers , 1995 .
[25] R. J. Wells. Acoustical Plenum Chambers , 1957 .
[26] A. Cummings,et al. Acoustic propagation in porous media with internal mean flow , 1987 .