Min Hequn, Lou Huading, Zhao Yuchen
Key Laboratory of Urban and Architectural Heritage Conservation, Ministry of Education, School of Architecture, Southeast University, 2# Sipailou, Nanjing, 210096, China.
Sci Rep. 2025 Jan 9;15(1):1401. doi: 10.1038/s41598-025-85171-3.
This paper presents a microperforated panel (MPP) sound absorber with parallel coiled-up-cavities of different-depths (PCD) and the corresponding optimization on their cavities. In this study, an analytical model is initially proposed for estimating the cavity depths of the PCD-MPP absorber upon normal incidence absorption coefficient evaluation at given resonance frequencies. Cavity effective depths and normal incidence absorption coefficient are evaluated after coiling up cavities for a compact structure. Numerical simulations with the finite element method and experiments are conducted for validations. Subsequently, a design process is suggested on the basis of the proposed model for sound absorption optimization. Results show that, absorption coefficient from the proposed analytical model agrees well with finite element simulations and experiments. It is also shown that, for the effective depth evaluation of the coiled-up cavities of PCD-MPP absorbers, the diagonal lines of subchannels of coiled-up cavities with a coiled-up angle of 180° can accurately represent the effective depths, while the combination of centerlines of subchannels and quarter arc inside the coiled-up area is more suitable for those with a coiled-up angle of 90°. Optimization investigation shows that, PCD-MPP absorbers can have high absorption performance with the averaged and maximum absorption coefficient of 0.91 and 0.98 within the target bandwidth of 400-1600 Hz, where the absorber thickness can stay below 65 mm. This work can provide valuable guidelines for the design of sound absorbers for broadband absorption.
本文提出了一种具有不同深度平行卷曲腔(PCD)的微穿孔板(MPP)吸声器及其腔的相应优化。在本研究中,最初提出了一个分析模型,用于在给定共振频率下评估垂直入射吸收系数时估计PCD-MPP吸声器的腔深度。为了实现紧凑结构,在卷曲腔后评估腔的有效深度和垂直入射吸收系数。采用有限元法进行数值模拟并开展实验进行验证。随后,基于所提出的模型提出了一种用于吸声优化的设计流程。结果表明,所提出的分析模型的吸收系数与有限元模拟和实验结果吻合良好。还表明,对于PCD-MPP吸声器卷曲腔的有效深度评估,卷曲角度为180°的卷曲腔子通道对角线可准确表示有效深度,而卷曲区域内子通道中心线和四分之一圆弧的组合更适用于卷曲角度为90°的情况。优化研究表明,PCD-MPP吸声器在400-1600Hz目标带宽内可具有高吸收性能,平均吸收系数和最大吸收系数分别为0.91和0.98,此时吸声器厚度可保持在65mm以下。这项工作可为宽带吸收吸声器的设计提供有价值的指导。