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单簧管簧片和管体的数值与实验模态分析

Numerical and experimental modal analysis of the reed and pipe of a clarinet.

作者信息

Facchinetti Matteo L, Boutillon Xavier, Constantinescu Andrei

机构信息

Laboratoire de Mécanique des Solides, CNRS-Ecole Polytechnique, 91128 Palaiseau Cedex, France.

出版信息

J Acoust Soc Am. 2003 May;113(5):2874-83. doi: 10.1121/1.1560212.

Abstract

A modal computation of a complete clarinet is presented by the association of finite-element models of the reed and of part of the pipe with a lumped-element model of the rest of the pipe. In the first part, we compare modal computations of the reed and the air inside the mouthpiece and barrel with measurements performed by holographic interferometry. In the second part, the complete clarinet is modeled by adjoining a series of lumped elements for the remaining part of the pipe. The parameters of the lumped-resonator model are determined from acoustic impedance measurements. Computed eigenmodes of the whole system show that modal patterns of the reed differ significantly whether it is alone or coupled to air. Some modes exhibit mostly reed motion and a small contribution of the acoustic pressure inside the pipe. Resonance frequencies measured on a clarinet with the mouthpiece replaced by the cylinder of equal volume differ significantly from the computed eigenfrequencies of the clarinet taking the actual shape of the mouthpiece into account and from those including the (linear) dynamics of the reed. This suggests revisiting the customary quality index based on the alignment of the peaks of the input acoustical impedance curve.

摘要

通过将簧片和部分笛管的有限元模型与笛管其余部分的集总元件模型相结合,对一支完整的单簧管进行了模态计算。在第一部分中,我们将簧片和吹嘴及笛头内空气的模态计算结果与全息干涉测量法所做的测量结果进行了比较。在第二部分中,通过为笛管的其余部分添加一系列集总元件,对完整的单簧管进行了建模。集总谐振器模型的参数由声阻抗测量确定。整个系统的计算本征模表明,无论簧片单独存在还是与空气耦合,其模态模式都有显著差异。一些模式主要表现为簧片的运动,而笛管内声压的贡献较小。用等体积的圆柱体替换吹嘴后在单簧管上测得的共振频率,与考虑了吹嘴实际形状的单簧管计算本征频率以及包括簧片(线性)动力学的本征频率有显著差异。这表明需要重新审视基于输入声阻抗曲线峰值对齐的传统品质指标。

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