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声波在固体—多孔煤质界面上的反射和折射 被引量:1

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出处 《南京大学学报(自然科学版)》 CAS CSCD 1991年第1期57-67,共11页 Journal of Nanjing University(Natural Science)
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同被引文献11

  • 1冯正.轻结构隔声原理与应用技术[M].北京:科学出版社,1987.11-70.
  • 2Mulholland K A, Price A J. Transmission loss of multiple panels in a random incidence field. Journal of the Acoustical Society of America, 1968, 43(6): 1 432-1 435.
  • 3Kurtze G, Watters B G. New wall design for high transmission loss or high damping. Journal of the Acoustical Society of America, 1959, 31 ( 6 ) :739- 748.
  • 4Makris S E, Dym C L. Transmission loss optimization in acoustic sandwich panels. Journal of the Acoustical Society of America, 1986, 79(6):1 833-1 843.
  • 5Bolton J S, Green E R. Normal incidence sound transmission through double-panel systems line dwith relatively stiff, partially reticulated polyurethane foam. Applied Acoustics, 1993, 39:23-51.
  • 6Sgard F C, Atalla N, Nicolas J. A numerical model for the low frequency diffuse field sound transmission loss of double-wall sound barriers with elastic porous linings. Journal of the Acoustical Society of America, 2000, 108(6) :2 865-2 872.
  • 7Zhan S, Cheng J C. Existence of broad acoustic bandgaps in three-component composite. Physical Review B, 2003, 68(15):1-6.
  • 8Baluni V, Willemsen J. Transmission of acoustic waves in random layered medium. Physical Review A, 1985, 31(5): 3 358-3 363.
  • 9Luan P G, Ye Z. Acoustic wave propagation in a one-dimensional layered system. Physical Review E, 2001, 63:1-8.
  • 10Munday J N, Bennett C B. Band gaps and defect modes in periodically structured waveguides.Journal of the Acoustical Society of America,2002, 112(4): 1 353-1 358.

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