Relationship Between the Sound Transmission Through the Finite Double-Panel Structure with a Cylindrical Shell Array and the Vibro-Acoustic Characteristics of its Constituents

IF 0.6 4区 物理与天体物理 Q4 ACOUSTICS
Song-Hun Kim, Myong-jin Kim
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引用次数: 0

Abstract

Sound insulation of the finite double-panel structure (DPS) inserted with a cylindrical shell array is investigated by varying the sound incidence direction to improve its applicability. The effects of the vibro-acoustic characteristics of its constituents on the sound transmission loss (STL) are estimated in one-third octave bands from 20 Hz to 5 kHz for different incidence conditions. It shows that the first acoustic mode in the direction parallel to two panels (longitudinal modes) produces both the sudden variation of sound insulation with frequency and a large dependency on the incidence angle. Mineral wools are placed on two boundaries perpendicular to the panels, and the sound insulation is explored for different thicknesses of the porous materials. An absorbent layer with a certain thickness (more than 30 mm in our work) sufficiently eliminates the longitudinal mode, resulting in the improvement in the sound insulation by more than 15 dB and the decrease of its large variation with incidence direction. STLs with varying shell thicknesses are also assessed. It shows that the natural vibrations of the thin shells can give an enhancement in sound insulation by more than 10 dB in the frequency range of 1600–3700 Hz, corresponding to constructive interference.
圆柱壳阵列有限双板结构的声传输与各组成部分振声特性的关系
通过改变声音入射方向,研究了插入圆柱壳阵列的有限双层板结构(DPS)的隔音性能,以提高其适用性。在不同入射条件下,在20 Hz至5 kHz的三分之一倍频程中,估计了其成分的振声特性对声音传输损耗(STL)的影响。研究表明,平行于两个面板的方向上的第一个声学模式(纵向模式)既会产生隔音随频率的突然变化,也会对入射角产生很大的依赖性。矿物棉被放置在垂直于面板的两个边界上,并针对不同厚度的多孔材料探索隔音效果。具有一定厚度(在我们的工作中超过30mm)的吸收层能够有效地消除纵向模式,从而使隔音性能提高超过15dB,并减少其随入射方向的大变化。还评估了不同外壳厚度的STL。研究表明,在1600–3700 Hz的频率范围内,薄壳体的自然振动可以使隔音效果增强10 dB以上,相当于相长干扰。
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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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