Acoustically-coupled flow-induced vibration of a computational vocal fold model

Comput Struct. 2013 Jan 15:116:50-58. doi: 10.1016/j.compstruc.2012.10.022.

Abstract

The flow-induced vibration of synthetic vocal fold models has been previously observed to be acoustically-coupled with upstream flow supply tubes. This phenomenon was investigated using a finite element model that included flow-structure-acoustic interactions. The length of the upstream duct was varied to explore the coupling between model vibration and subglottal acoustics. Incompressible and slightly compressible flow models were tested. The slightly compressible model exhibited acoustic coupling between fluid and solid domains in a manner consistent with experimental observations, whereas the incompressible model did not, showing the slightly compressible approach to be suitable for simulating acoustically-coupled vocal fold model flow-induced vibration.

Keywords: Acoustic coupling; Flow-induced vibration; Fluid–structure–acoustic interaction; Slightly compressible flow models; Vocal fold vibration.