Correction of evanescent wave influence on the flexural wave velocity and wavelength estimation based on a mode shape function

IF 0.6 4区 物理与天体物理 Q4 ACOUSTICS Archives of Acoustics Pub Date : 2023-07-20 DOI:10.24425/aoa.2022.142017
F. Pantelić
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Abstract

The aim of this research is to use a simple acoustic method of a very near field recording, which enables measurement and display of oscillation modes, to estimate the velocity of flexural waves, based on the wave-lengths of standing waves measured on the sample. The paper analyses cases of 1D geometry, flexural waves that occur on a beam excited by an impulse. Measurements were conducted on two different samples: steel and a wooden beam of the same length. Due to the appearance of evanescent waves at the boundary regions, the distance between the nodes of standing waves that occur deviates from half the wavelength, which can be compensated using a correction factor. Cases of fixed and free boundary conditions were analysed. By quantifying how much the boundary conditions change the mode shape function, it can be predicted how the mode of oscillation changes if the boundary conditions change, which can also find application in musical acoustics and sound radiation analysis.
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基于模态振型函数的倏逝波对弯曲波速和波长估计的影响校正
本研究的目的是使用一种简单的声学方法进行近场记录,该方法可以测量和显示振荡模式,并根据在样品上测量的驻波的波长来估计弯曲波的速度。本文分析了一维几何情况下,受脉冲激励的梁上产生的弯曲波。测量是在两个不同的样本上进行的:相同长度的钢梁和木梁。由于在边界区域出现倏逝波,发生驻波的节点之间的距离偏离了波长的一半,这可以使用校正因子进行补偿。分析了固定边界条件和自由边界条件的情况。通过量化边界条件对振型函数的改变程度,可以预测边界条件改变时振型的变化情况,在音乐声学和声辐射分析中也有应用。
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来源期刊
Archives of Acoustics
Archives of Acoustics 物理-声学
CiteScore
1.80
自引率
11.10%
发文量
0
审稿时长
6-12 weeks
期刊介绍: Archives of Acoustics, the peer-reviewed quarterly journal publishes original research papers from all areas of acoustics like: acoustical measurements and instrumentation, acoustics of musics, acousto-optics, architectural, building and environmental acoustics, bioacoustics, electroacoustics, linear and nonlinear acoustics, noise and vibration, physical and chemical effects of sound, physiological acoustics, psychoacoustics, quantum acoustics, speech processing and communication systems, speech production and perception, transducers, ultrasonics, underwater acoustics.
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