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Mechanics of the contact area between a violin bow and a string. Part III: Parameter dependence

机译:小提琴弓和琴弦之间接触区域的力学原理。第三部分:参数依赖性

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This paper explores aspects of the simulation model of a string bowed by a bow of finite width developed in the companions [1, 2] to this paper. In particular we study the details of the stick-slip transitions, the flattening effect, and the influence of changing bow-hair compliance and string bending stiffness. Modelling of the finite width changes markedly the region of the player's control-parameter space in which musically acceptable waveforms are obtained. It is clearly important to allow for finite width effects in future systematic studies of bowed-string dynamics. It is shown that one can go some way towards doing this by defining an "equivalent point-bow model" in which use is made of the finite-width results to modify the friction model used in point-bow simulations. [References: 22]
机译:本文探讨了在伴随文件[1,2]中开发的由有限宽度的弓首弓成弓首的弦的仿真模型的各个方面。特别是,我们研究了粘滑过渡,拉平效果以及弓弦柔度和琴弦弯曲刚度变化的影响的细节。有限宽度的建模会明显改变演奏者的控制参数空间的区域,在该区域中可获得音乐上可接受的波形。在未来的弦弦动力学系统研究中,考虑有限的宽度效应显然很重要。结果表明,可以通过定义“等效点-弓形模型”来做到这一点,其中使用有限宽度结果来修改点-弓形仿真中使用的摩擦模型。 [参考:22]

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