Vazquez Torre Javier Hernan, Brunskog Jonas, Cutanda Henriquez Vicente
Acoustic Technology, DTU Electrical Engineering, Technical University of Denmark, Kgs. Lyngby 2800, Denmark.
J Acoust Soc Am. 2020 Mar;147(3):1697. doi: 10.1121/10.0000923.
Acoustic metamaterials (AM) have emerged as an academic discipline within the last decade. When used for sound insulation, metamaterials can show high transmission loss at low frequencies, despite having low mass per unit area. This paper investigates the possibility of using AMs to increase the sound insulation of finite single leaf walls (SLWs), focusing on the coincidence effect problem. Formulas are derived using a variational technique for the forced sound transmission of finite SLWs with a coupled array of single degree of freedom resonators. An analytical model is presented for this simple case, and the effects of the band gap in sound transmission and radiation are analyzed. Moreover, the influence of each parameter is studied, especially the presence of losses, giving way to an optimized way of designing this type of structure using constrained parameter optimization. Numerical validations are performed and discussed. Finally, some conclusions are drawn regarding the effectiveness of the proposed model, including possible applications.
声学超材料(AM)在过去十年中已成为一门学科。当用于隔音时,尽管超材料每单位面积的质量较低,但在低频时仍可表现出高传输损耗。本文研究了使用声学超材料来提高有限单叶墙(SLW)隔音性能的可能性,重点关注吻合效应问题。利用变分技术推导了具有单自由度谐振器耦合阵列的有限单叶墙强迫声传输的公式。针对这种简单情况提出了一个分析模型,并分析了声传输和辐射中的带隙效应。此外,研究了每个参数的影响,特别是损耗的存在,从而产生了一种使用约束参数优化来设计此类结构的优化方法。进行并讨论了数值验证。最后,就所提出模型的有效性得出了一些结论,包括可能的应用。