Sound admittance of porous material is deduced on the basis of Wilson numerical method. A numerical method for calculating the absorption property of porous metal at high sound pressure level(SPL)is developed by using a standard fourth-order Runge-Kutta algorithm. It is found that an exponential distribution in Wilson method for identifying the distance between discrete points of calculating meshes is unnecessary in the proposed method
and the sound absorption properties of porous metal at high sound pressure levels can be well evaluated with smaller number of meshes. The SPL of incident wave exerts greater influence on the acoustic resistance of porous metal than on the acoustic reactance in the case of porous material without air gap. However
for the case of porous material with an air gap
the influence of reactance on the acoustic properties of porous metal is enhanced gradually.
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JING Xiaodong, WANG Xiaoyu, SUN Xiaofeng. Broadband acoustic liner based on the mechanism of multiple cavity resonance [J]. AIAA Journal, 2007, 45(10): 2429-2437.
PENG Feng, WANG Xiaolin, SUN Yan, et al. Investigation on the sound absorption characteristics of porous metal plates at high sound pressure levels [J]. Acta Acoustica, 2009, 34(3): 266-274.
ZHANG Bo, CHEN Tianning, FENG Kai, et al. Sound absorption properties of sintered fibrous metals under high temperature conditions [J].Journal of Xi'an Jiaotong University, 2008, 42(11): 1327-1331.
WANG Xiaolin. Porous metal absorbers for underwater sound [J]. Journal of the Acoustical Society of America, 2007, 112(5): 2626-2635.
卢天健, DUPÈRE I D J, DOWLING A P.多孔泡沫材料的声吸收特性[J].西安交通大学学报, 2007, 41(9): 1003-1011.
LU Tianjian, DUPÈRE I D J, DOWLING A P. Absorption of sound in cellular foams [J]. Journal of Xi'an Jiaotong University, 2007, 41(9): 1003-1011.
ZHANG Bo, CHEN Tianning. Calculation of sound absorption characteristics of porous sintered fiber-metal [J]. Applied Acoustics, 2009, 70(2): 337-346.
MELLING T H. An impedance tube for precision measurement of acoustic impedance and insertion loss at high sound pressure levels [J]. Journal of Sound and Vibration, 1973, 28(1): 23-54.
马大猷.高声强下的微穿孔板 [J].声学学报, 1996, 21(1): 10-14.
MA Dayou. Microperforated panel at high sound intensity [J]. Acta Acoustica, 1996, 21(1): 10-14.
UMNOVA O, ATTENBOROUGH K, STANDLEY E, et al, Behavior of rigid-porous layers at high levels of continuous acoustic excitation: theory and experiment [J]. J Acoust Soc Am, 2003, 114(3): 1346-1356.
WILSON D K, MCINTOSH J D, LAMBERT R F. Forchheimer-type nonlinearities for high-intensity propagation of pure tone in air saturated porous media [J]. J Acoust Soc Am, 1988, 84(1): 350-359.
MCINTOSH J D, LAMBERT R F. Nonlinear wave propagation through rigid porous materials, I: nonlinear parameterization and numerical solutions [J]. J Acoust Soc Am, 1990, 88(4): 1939-1949.