消声器
声学
声衰减
衰减
亥姆霍兹自由能
膨胀室
材料科学
传输损耗
声音传输等级
吸收(声学)
亥姆霍兹谐振器
谐振器
带隙
Crystal(编程语言)
插入损耗
噪声控制
光学
物理
光电子学
计算机科学
降噪
机械
量子力学
程序设计语言
作者
Yang Bai,Yuehua Chen,Jiahui Zheng
标识
DOI:10.1038/s41598-024-79762-9
摘要
To enhance the low-frequency sound absorption capabilities of expansion chamber mufflers, a novel Helmholtz-ring phononic crystal cell was developed. This innovative design integrates ring Helmholtz resonators as the phononic crystal scatterer, which is periodically arranged within the expansion chamber of a muffler to achieve enhanced sound attenuation at deep sub-wavelength scales. The transmission loss characteristics of the phononic crystal muffler were thoroughly examined and found to reveal a pronounced enhancement in sound absorption within the low-frequency bandgap. A critical aspect of this study was the analysis of the influence of defect states on transmission loss of the muffler. The introduction of defect states significantly expanded the sound attenuation bandwidth, effectively compensating for reduced sound absorption performance of the muffler outside the bandgap. The proposed phononic crystal muffler demonstrated a marked improvement in both transmission loss and aerodynamic performance compared to the traditional expansion chamber muffler. Notably, the sound attenuation was further augmented when in defective states. Corresponding experimental investigations were conducted and confirmed the effectiveness of the phononic crystal muffler within its designated bandgap range. This research presents a new way for the development of more efficient noise control solutions.
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