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中音萨克斯管产生的振荡模式:控制参数和管身非谐性的影响。

Oscillation regimes produced by an alto saxophone: Influence of the control parameters and the bore inharmonicity.

作者信息

Doc Jean-Baptiste, Vergez Christophe

机构信息

Laboratoire de Mécanique et d'Acoustique, CNRS, UPR 7051, Aix-Marseille Université, Centrale Marseille, F-13402 Marseille Cedex 20, France.

出版信息

J Acoust Soc Am. 2015 Apr;137(4):1756-65. doi: 10.1121/1.4916197.

Abstract

The aim of this work is to highlight experimentally how inharmonicity of the bore resonance frequencies of an alto saxophone influences the nature of the oscillation regimes. A variable volume branching from the neck of an alto sax at an appropriate position allows one to change the frequency of the first resonance independently from the second. A blowing machine with artificial lips is used to make the saxophone play while controlling independently the control parameters: the blowing pressure and an embouchure parameter. Values of these parameters are estimated experimentally through the measurement of the nonlinear characteristics linking the mean air flow blown into the instrument to the static pressure difference across the reed. Experiments with different values of the control parameters as well as of the inharmonicity produce different kinds of oscillation regimes. These regimes are categorized through the analysis of the pressure signal inside the mouthpiece. The resulting maps demonstrate that the emergence of quasi-periodic regimes, and their extent, depend on the level of inharmonicity, but also on the values of the control parameters. Periodic regimes playable by choosing appropriate values of the control parameters also differ according to the level of inharmonicity, a higher inharmonicity facilitating the emergence of the third register.

摘要

这项工作的目的是通过实验突出中音萨克斯管笛身共振频率的非谐性如何影响振荡模式的性质。在中音萨克斯管颈部的适当位置处有一个可变容积分支,这使得人们能够独立于第二共振频率来改变第一共振频率。使用带有仿造嘴唇的吹气装置,在独立控制控制参数(吹气压力和口型参数)的同时让萨克斯管发声。通过测量将吹入乐器的平均气流与簧片两端的静压差联系起来的非线性特性,对这些参数的值进行实验估计。使用不同的控制参数值以及非谐性值进行实验会产生不同类型的振荡模式。通过对吹嘴内部压力信号的分析对这些模式进行分类。所得的图谱表明,准周期模式的出现及其程度不仅取决于非谐性水平,还取决于控制参数的值。通过选择适当的控制参数值可演奏的周期模式也因非谐性水平而异,较高的非谐性有利于第三音区的出现。

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