期刊论文详细信息
Acoustical Science and Technology
Measurement method with a pressure-velocity sensor for measuring surface normal impedance of materials using ensemble averaging: Comparison with other methods and its geometrical configuration
Nazli Bin Che Din1  Kusno Asniawaty1  Noriko Okamoto3  Toru Otsuru2  Reiji Tomiku2 
[1]Graduate School of Engineering, Oita University
[2]Department of Architecture and Mechatronics, Oita University
[3]Venture Business Laboratory, Oita University
关键词: Ensemble averaging;    Normalized impedance;    Absorption characteristics;   
DOI  :  10.1250/ast.33.86
学科分类:声学和超声波
来源: Acoustical Society of Japan
PDF
【 摘 要 】
References(25)Cited-By(2)In an earlier paper [T. Otsuru et al., J. Acoust. Soc. Am., 125, 3784–3791 (2009)], the theoretical development and concept of “ensemble averaged” surface normal impedance were summarized by some of the authors using the math–physical model based on the boundary element method (BEM). This paper elaborates further on past discussions of the measuring method of the surface impedance of materials. First, three materials, namely, 50-mm-thick glass wool, 25-mm-thick glass wool, and 10-mm-thick needle felt, were measured in a reverberation room to compare the absorption characteristics measured using sensors of different types. Measured data show good agreement between the sensor types in the absorption coefficients, while some discrepancies are seen in the impedances. Next, the feasibility of our method in terms of sound absorption characteristics was confirmed using a series of measurements in comparison with the impedance tube method. Finally, the effects of sample size and receiver-to-sample distance are presented both in simulation and measurement for investigating the level of utility in various applications. The resulting absorption characteristics are examined to elucidate an appropriate measurement setting and demonstrate the general utility of the method.
【 授权许可】

Unknown   

【 预 览 】
附件列表
Files Size Format View
RO201912080715806ZK.pdf 2571KB PDF download
  文献评价指标  
  下载次数:10次 浏览次数:18次