cote interne IRCAM: Verge97b/National audienceData on the internal acoustic pressure signals in an experimental recorderlike flue organ pipe are presented. A dimensionless representation appears to be a powerful basis for the analysis of these data. The dimensionless amplitude of the fundamental is, for a given geometry, a function of the Strouhal number only. For the first hydrodynamic mode of the jet, this amplitude is independent of the acoustic mode involved. The dimensionless amplitude of the second harmonic displays two different behaviors, depending on whether the jet is laminar or turbulent. This specific Strouhal number dependency implies a strong influence of the distance W from the flue exit to the labium on the timbre of recorde...
cote interne IRCAM: Hirschberg95aNational audienceThis paper presents a simple turbulence noise mode...
When basic phenomena of the physics of flue organ pipes is studied, experiments on models are accept...
We propose a simple model to describe the transient of our experimental recorder. The acoustic energ...
cote interne IRCAM: Verge97b/National audienceData on the internal acoustic pressure signals in an e...
cote interne IRCAM: Verge97b/National audienceData on the internal acoustic pressure signals in an e...
Data on the internal acoustic pressure signals in an experimental recorderlike flue organ pipe are p...
cote interne IRCAM: Verge97a/National audienceA simple one-dimensional representation of recorderlik...
A simple one-dimensional representation of recorderlike instruments, that can be used for sound synt...
A simplified treatment is given of the mechanism of sound production in musical instruments driven b...
cote interne IRCAM: Verge95a/National audienceIn this paper, a simple one-dimensional representation...
This work is about sound production by the interaction between a jet flow and a resonator : the coup...
A nearly exact, nonparametric treatment is devised to allow calculation of the transient and steady‐...
Changing the vocal tract shape is one of the techniques which can be used by the players of wind ins...
Sound generation in flue organ pipes is caused by the non-linear interaction between an instable jet...
cote interne IRCAM: Hirschberg95aNational audienceThis paper presents a simple turbulence noise mode...
When basic phenomena of the physics of flue organ pipes is studied, experiments on models are accept...
We propose a simple model to describe the transient of our experimental recorder. The acoustic energ...
cote interne IRCAM: Verge97b/National audienceData on the internal acoustic pressure signals in an e...
cote interne IRCAM: Verge97b/National audienceData on the internal acoustic pressure signals in an e...
Data on the internal acoustic pressure signals in an experimental recorderlike flue organ pipe are p...
cote interne IRCAM: Verge97a/National audienceA simple one-dimensional representation of recorderlik...
A simple one-dimensional representation of recorderlike instruments, that can be used for sound synt...
A simplified treatment is given of the mechanism of sound production in musical instruments driven b...
cote interne IRCAM: Verge95a/National audienceIn this paper, a simple one-dimensional representation...
This work is about sound production by the interaction between a jet flow and a resonator : the coup...
A nearly exact, nonparametric treatment is devised to allow calculation of the transient and steady‐...
Changing the vocal tract shape is one of the techniques which can be used by the players of wind ins...
Sound generation in flue organ pipes is caused by the non-linear interaction between an instable jet...
cote interne IRCAM: Hirschberg95aNational audienceThis paper presents a simple turbulence noise mode...
When basic phenomena of the physics of flue organ pipes is studied, experiments on models are accept...
We propose a simple model to describe the transient of our experimental recorder. The acoustic energ...