Groby J-P, Lagarrigue C, Brouard B, Dazel O, Tournat V, Nennig B
Laboratoire d'Acoustique de l'Université du Maine, L'Université Nantes Angers Le Mans, Université du Maine, CNRS, UMR-6613 CNRS, Avenue Olivier Messiaen, 72085 Le Mans, France.
Laboratoire d'Ingénierie des Systèmes Mécaniques et des Matériaux, EA 2336, Supméca, 3 Rue Fernand Hainaut, 93407 Saint-Ouen Cedex, France.
J Acoust Soc Am. 2015 Jan;137(1):273-80. doi: 10.1121/1.4904534.
This paper studies the acoustical properties of hard-backed porous layers with periodically embedded air filled Helmholtz resonators. It is demonstrated that some enhancements in the acoustic absorption coefficient can be achieved in the viscous and inertial regimes at wavelengths much larger than the layer thickness. This enhancement is attributed to the excitation of two specific modes: Helmholtz resonance in the viscous regime and a trapped mode in the inertial regime. The enhancement in the absorption that is attributed to the Helmholtz resonance can be further improved when a small amount of porous material is removed from the resonator necks. In this way the frequency range in which these porous materials exhibit high values of the absorption coefficient can be extended by using Helmholtz resonators with a range of carefully tuned neck lengths.
本文研究了周期性嵌入充气亥姆霍兹共振器的硬背多孔层的声学特性。结果表明,在波长远大于层厚度的粘性和惯性区域,可以实现声吸收系数的一些增强。这种增强归因于两种特定模式的激发:粘性区域中的亥姆霍兹共振和惯性区域中的俘获模式。当从共振器颈部去除少量多孔材料时,归因于亥姆霍兹共振的吸收增强可以进一步提高。通过这种方式,使用具有一系列精心调整颈部长度的亥姆霍兹共振器,可以扩展这些多孔材料表现出高吸收系数的频率范围。