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Modelling the Mechanical Response of the Reed-Mouthpiece-Lip System of a Clarinet. Part I. A One-Dimensional Distributed Model

机译:模拟单簧管的簧片-喉舌-唇系统的机械响应。第一部分:一维分布式模型

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摘要

The motion of a clarinet reed that is clamped to a mouthpiece and supported by a lip is simulated in the time-domain using finite difference methods. The reed is modelled as a bar with non-uniform cross section, and is described using a one-dimensional, fourth-order partial differential equation. The interactions with the mouthpiece lay and the player's lip are taken into account by incorporating conditional contact forces in the bar equation. The model is completed by clamped-free boundary conditions for the reed. An implicit finite difference method is used for discretising the system, and values for the physical parameters are chosen both from laboratory measurements and by accurate tuning of the numerical simulations. The accuracy of the numerical system is assessed through analysis of frequency warping effects and of resonance estimation. Finally, the mechanical properties of the system are studied by analysing its response to external driving forces. In particular, the effects of reed curling are investigated.
机译:在时域中使用有限差分方法模拟单簧管簧片的运动,该簧片固定在吹口上并由嘴唇支撑。芦苇被建模为横截面不均匀的条形,并使用一维四阶偏微分方程进行描述。通过在条形方程中纳入条件接触力,可以考虑与吹口位置和演奏者嘴唇之间的相互作用。该模型由簧片的自由夹紧边界条件完成。隐式有限差分法用于离散化系统,物理参数的值既可以从实验室测量值中选择,也可以通过精确调整数值模拟来选择。通过分析频率扭曲效应和共振估计来评估数值系统的准确性。最后,通过分析系统对外部驱动力的响应来研究系统的机械性能。特别是,研究了芦苇卷曲的影响。

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