ON THE SINGLE-MASS MODEL OF THE VOCAL FOLDS.

Fluid Dyn Res

Boston University, College of Engineering, 110 Cummington Street, Boston MA 02215.

Published: January 2010

An analysis is made of the fluid-structure interactions necessary to support self-sustained oscillations of a single-mass mechanical model of the vocal folds subject to a nominally steady subglottal overpressure. The single-mass model of Fant and Flanagan is re-examined and an analytical representation of vortex shedding during 'voiced speech' is proposed that promotes cooperative, periodic excitation of the folds by the glottal flow. Positive feedback that sustains glottal oscillations is shown to occur during glottal contraction, when the flow separates from the 'trailing edge' of the glottis producing a low pressure 'suction' force that tends to pull the folds together. Details are worked out for flow that can be regarded as locally two-dimensional in the glottal region. Predictions of free-streamline theory are used to model the effects of quasi-static variations in the separation point on the glottal wall. Numerical predictions are presented to illustrate the waveform of the sound radiated towards the mouth from the glottis. The theory is easily modified to include feedback on the glottal flow of standing acoustic waves, both in the vocal tract beyond the glottis and in the subglottal region.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2857605PMC
http://dx.doi.org/10.1088/0169-5983/42/1/015001DOI Listing

Publication Analysis

Top Keywords

single-mass model
8
model vocal
8
vocal folds
8
glottal flow
8
glottal
6
folds
4
folds analysis
4
analysis fluid-structure
4
fluid-structure interactions
4
interactions support
4

Similar Publications

The phenomenon of snaking of vehicles can be caused by many factors. It results from the loss of the vehicle's straight-line direction of motion, which is intended by the driver. In this situation, for single-mass vehicles (like automobiles), special systems (braking) are activated, aiming to return the vehicle to the direction intended by the driver.

View Article and Find Full Text PDF

This paper introduces an electromagnetic structure utilizing the controllable mechanical properties of magnetorheological elastomer (MRE) materials through magnetic flux. An adaptive elastic foundation composed of these materials is explored for vibration reduction and frequency modulation. This study investigates these effects using both a single-mass model and a coupled human-seat model.

View Article and Find Full Text PDF

The long-term impact of mass violence attacks is practically unknown, especially in children and adolescents. In a previous study, we found that 8.5 years after a terror attack targeting mainly adolescents, nearly half of the survivors met diagnostic criteria for insomnia.

View Article and Find Full Text PDF

Electric-Force Conversion Performance of Si-Based LiNbO Devices Based on Four Cantilever Beams.

Micromachines (Basel)

October 2023

Science and Technology on Electronic Test and Measurement Laboratory, North University of China, Taiyuan 030051, China.

In micron or nano smart sensing systems, piezoelectric cantilever beams are distributed as major components in microsensors, actuators, and energy harvesters. This paper investigates the performance of four cantilever beam devices with "electric-force" conversion based on the inverse piezoelectric effect of lithium niobate (LiNbO, LN) single-crystal materials. A new compact piezoelectric smart device model is proposed, designed as a single mass block connected by four beams, where devices exhibit smaller lateral errors (0.

View Article and Find Full Text PDF

The multi-dimensional potential energy surface (PES) of a nanoparticle, such as a bare cluster of metal atoms, controls both the structure and dynamic behaviour of the particle. These properties are the subject of numerous theoretical simulations. However, quantitative experimental measurements of critical PES parameters are needed to regulate the models employed in the theoretical work.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!