Sound transmission of periodic composite structure lined with porous core: rib-stiffened double panel case
Abstract
Porous materials are effective for the isolation of sound with medium to high frequencies, while periodic structures are promising for low to medium frequencies. In the present work, we study the sound insulation of a periodically rib-stiffened double-panel with porous lining to reveal the effect of combining the two characters above. The theoretical development of the periodic composite structure, which is based on the space harmonic series and Biot theory, is included. The system equations are subsequently solved numerically by employing a precondition method with a truncation procedure. This theoretical and numerical framework is validated with results from both theoretical and finite element methods. The parameter study indicates that the presence of ribs can lower the overall sound insulation, although a direct transfer path is absent. Despite the unexpected model results, the method proposed here, which combines poroelastic modeling and periodic structures semi-analytically, can be promising in broadband sound modulation.
Keywords
Cite
@article{arxiv.1808.06590,
title = {Sound transmission of periodic composite structure lined with porous core: rib-stiffened double panel case},
author = {Hou Qiao and Zeng He and Wen Jiang and Weicai Peng},
journal= {arXiv preprint arXiv:1808.06590},
year = {2018}
}
Comments
36 pages, 17 figures and 3 appendixes