各向同性
传递矩阵
声学
消声室
话筒
材料科学
结构声学
基质(化学分析)
传递矩阵法(光学)
机械
多孔性
电阻抗
多孔介质
物理
声压
复合材料
光学
计算机科学
量子力学
光电子学
计算机视觉
振动
作者
Bryan H. Song,J. Stuart Bolton
出处
期刊:Journal of the Acoustical Society of America
[Acoustical Society of America]
日期:2000-03-01
卷期号:107 (3): 1131-1152
被引量:376
摘要
A method for evaluating the acoustical properties of homogeneous and isotropic porous materials that may be modeled as fluids having complex properties is described here. To implement the procedure, a conventional, two-microphone standing wave tube was modified to include: a new sample holder; a section downstream of the sample holder that accommodated a second pair of microphone holders and an approximately anechoic termination. Sound-pressure measurements at two upstream and two downstream locations were then used to estimate the two-by-two transfer matrix of porous material samples. The experimental transfer matrix method has been most widely used in the past to measure the acoustical properties of silencer system components. That procedure was made more efficient here by taking advantage of the reciprocal nature of sound transmission through homogeneous and isotropic porous layers. The transfer matrix of a homogeneous and isotropic, rigid or limp porous layer can easily be used to identify the material's characteristic impedance and wave number, from which other acoustical quantities of interest can be calculated. The procedure has been used to estimate the acoustical properties of a glass fiber material: good agreement was found between the estimated acoustical properties and those predicted by using the formulas of Delany and Bazley.
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