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Effects of nonlinear sound propagation on the characteristic timbres of brass instruments

机译:非线性声音传播对铜管乐器特征音色的影响

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The capacity of a brass instrument to generate sounds with strong high-frequency components is dependent on the extent to which its bore profile supports nonlinear sound propagation. At high dynamic levels some instruments are readily sounded in a cuivré (brassy) manner: this phenomenon is due to the nonlinear propagation of sound in ducts of the proportions typical of labrosones (lip-reed aerophones). The effect is also evident at lower dynamic levels and contributes to the overall tonal character of the various kinds of brass instrument. This paper defines a brassiness potential parameter derived from the bore geometries of brass instruments. The correlation of the brassiness potential parameter with spectral enrichment as measured by the spectral centroid of the radiated sound is examined in playing tests using musicians, experiments using sine-wave excitation of instruments, and simulations using a computational tool. The complementary effects of absolute bore size on spectral enrichment are investigated using sine-wave excitation of cylindrical tubes and of instruments, establishing the existence of a trade-off between bore size and brassiness potential. The utility of the brassiness potential parameter in characterizing labrosones is established, and the graphical presentation of results in a 2D space defined by bore size and brassiness potential demonstrated.
机译:铜管乐器产生具有强高频成分的声音的能力取决于其内腔轮廓支持非线性声音传播的程度。在高动态水平下,某些乐器很容易以居里(黄铜)的方式进行发声:这种现象是由于声音在管道中以拉博松(唇形簧片)的典型比例非线性传播所致。这种效果在较低的动态水平下也很明显,并且有助于各种铜管乐器的整体音调特征。本文定义了从黄铜乐器的孔的几何形状导出的黄铜势参数。在演奏者的演奏测试,使用乐器的正弦波激励的实验以及使用计算工具的模拟中,检查了黄铜色电位参数与通过辐射声的频谱质心测量的频谱富集的相关性。使用圆柱管和仪器的正弦波激励研究了绝对孔径对光谱富集的互补影响,确定了孔径和黄铜性之间的权衡。建立了黄铜色电位参数在表征拉松酮中的效用,并证明了在由孔径和黄铜色电位定义的二维空间中结果的图形表示。

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