Statistical Estimation of Mechanical Parameters of Clarinet Reeds Using Experimental and Numerical Approaches
Pierre-Andr\'e Taillard, Franck Lalo\"e (LKB - Lhomond), Michel Gross, (L2C), Jean-Pierre Dalmont (LAUM), Jean Kergomard (LMA)

TL;DR
This study combines experimental holography and numerical simulations to analyze clarinet reed vibrations, revealing key parameters affecting resonance frequencies and proposing a viscoelastic model for material characterization.
Contribution
It introduces a comprehensive approach integrating statistical, experimental, and numerical methods to characterize clarinet reed mechanics and material properties.
Findings
Resonance frequencies correlate with specific mechanical parameters.
Elastic moduli are frequency-dependent, affecting vibrational behavior.
A viscoelastic model accurately characterizes reed material properties.
Abstract
A set of 55 clarinet reeds is observed by holography, collecting 2 series of measurements made under 2 different moisture contents, from which the resonance frequencies of the 15 first modes are deduced. A statistical analysis of the results reveals good correlations, but also significant differences between both series. Within a given series, flexural modes are not strongly correlated. A Principal Component Analysis (PCA) shows that the measurements of each series can be described with 3 factors capturing more than of the variance: the first is linked with transverse modes, the second with flexural modes of high order and the third with the first flexural mode. A forth factor is necessary to take into account the individual sensitivity to moisture content. Numerical 3D simulations are conducted by Finite Element Method, based on a given reed shape and an orthotropic model. A…
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