Analytical model to predict the effect of a finite impedance surface on the propagation properties of a 2D Sonic Crystal
arXiv:1102.1602 · doi:10.1088/0022-3727/44/26/265501
Abstract
The use of Sonic Crystals as environmental noise barriers has certain advantages from the acoustical and the constructive point of view with regard to conventional ones. One aspect do not studied yet is the acoustic interaction between the Sonic Crystals and the ground due to, up to now, this latter is not included in the analytical models used to characterize these Sonic Crystals. We present here an analytical model, based on multiple scattering theory, to study this interaction considering the ground as a finite impedance surface. Using this model we have obtained interesting conclusions that allow to design more effectively noise screens based on Sonic Crystals. The obtained results have been compared with experimental and numerical, finding a good agreement between them.
References in corpus (1)
Cited by in corpus (3)
- Theoretical and experimental evidence of level repulsion states and evanescent modes in sonic crystal stubbed waveguides
- Level repulsion and evanescent waves in sonic crystals
- Analysis of the wave propagation properties of a periodic array of rigid cylinders perpendicular to a finite impedance surface