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Torsional behaviour of cello strings

机译:大提琴琴弦的扭转行为

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The behaviour of a bowed string depends, among other things, on the frequency, impedance and internal damping of torsional waves on the string. Very little published information is available about these quantities, especially the torsional damping. Measurements of all relevant torsional properties have been mode on cello strings of three different constructions. These show that the torsional modes are harmonically spaced to reasonable accuracy, and that the Q factors are approximately equal for all modes of a given string. These torsional Q factors are roughly an order of magnitude smaller than those of the transverse modes of the same string. The torsional wave speed varies somewhat with the tension in the string, decreasing with higher tension. The damping factors are not significantly influenced by tension. These results have been expressed in terms of a novel "reflection function" [1] suitable for direct incorporation into simulations of the bowing process. [References: 12]
机译:弓弦的行为除其他因素外,还取决于弦上扭波的频率,阻抗和内部阻尼。关于这些量,特别是扭转阻尼,很少有公开的信息。在三种不同构造的大提琴琴弦上已进行了所有相关扭转特性的测量。这些表明扭转模式以合理的精度谐波间隔开,并且对于给定弦的所有模式,Q因子近似相等。这些扭转Q因子大约比同一弦的横向模态小一个数量级。扭转波速随弦中的张力而有所变化,而随着张力的增加而减小。阻尼因素不受张力的显着影响。这些结果已通过一种新颖的“反射函数” [1]表示,该函数适合直接并入弓曲过程的仿真中。 [参考:12]

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