Dalmont Jean-Pierre, Gilbert Joël, Kergomard Jean, Ollivier Sébastien
Laboratoire d'Acoustique de l'Université du Maine (UMR CNRS 6613), Université du Maine, 72085 Le Mans, France.
J Acoust Soc Am. 2005 Nov;118(5):3294-305. doi: 10.1121/1.2041207.
This paper investigates the dynamic range of the clarinet from the oscillation threshold to the extinction at high pressure level. The use of an elementary model for the reed-mouthpiece valve effect combined with a simplified model of the pipe assuming frequency independent losses (Raman's model) allows an analytical calculation of the oscillations and their stability analysis. The different thresholds are shown to depend on parameters related to embouchure parameters and to the absorption coefficient in the pipe. Their values determine the dynamic range of the fundamental oscillations and the bifurcation scheme at the extinction.
本文研究了单簧管在高压水平下从振荡阈值到熄灭的动态范围。将簧片 - 吹嘴阀门效应的基本模型与假设频率无关损耗的简化管模型(拉曼模型)相结合,能够对振荡进行解析计算并进行稳定性分析。结果表明,不同的阈值取决于与口型参数以及管内吸收系数相关的参数。它们的值决定了基波振荡的动态范围以及熄灭时的分岔方案。