Bissinger George
East Carolina University, Greenville, North Carolina 27858, USA.
J Acoust Soc Am. 2003 Mar;113(3):1718-23. doi: 10.1121/1.1538199.
Violin corpus wall compliance, which has a substantial effect on cavity mode frequencies, was added to Shaw's two-degree-of-freedom (2DOF) network model for A0 ("main air") and A1 (lowest length mode included in "main wood") cavity modes. The 2DOF model predicts a V(-0.25) volume dependence for A0 for rigid violin-shaped cavities, to which a semiempirical compliance correction term, V(-x(c)) (optimization parameter x(c)) consistent with cavity acoustical compliance and violin-based scaling was added. Optimizing x(c) over A0 and A1 frequencies measured for a Hutchins-Schelleng violin octet yielded x(c) approximately 0.08. This markedly improved A0 and A1 frequency predictions to within approximately +/- 10% of experiment over a range of about 4.5:1 in length, 10:1 in f-hole area, 3:1 in top plate thickness, and 128:1 in volume. Compliance is a plausible explanation for A1 falling close to the "main wood" resonance, not increasingly higher for the larger instruments, which were scaled successively shorter compared to the violin for ergonomic and practical reasons. Similarly incorporating compliance for A2 and A4 (lowest lower-/upper-bout modes, respectively) improves frequency predictions within +/-20% over the octet.
对肖氏用于A0(“主空气”)和A1(“主木材”中包含的最低长度模式)腔体模式的两自由度(2DOF)网络模型,添加了对腔体模式频率有重大影响的小提琴音柱壁顺应性。2DOF模型预测,对于刚性小提琴形状的腔体,A0的体积依赖性为V(-0.25),在此基础上添加了一个与腔体声学顺应性和基于小提琴的缩放比例一致的半经验顺应性校正项V(-x(c))(优化参数x(c))。针对哈钦斯 - 谢伦小提琴八重奏所测量的A0和A1频率对x(c)进行优化,得到x(c)约为0.08。这在长度范围约为4.5:1、f孔面积范围约为10:1、顶板厚度范围约为3:1以及体积范围约为128:1内,将A0和A1频率预测显著改善至实验值的约±10%以内。顺应性是A1接近“主木材”共振的一个合理原因,对于因人体工程学和实际原因与小提琴相比尺寸逐渐缩短的较大乐器,A1频率并非越来越高。类似地,将A2和A4(分别为最低的下/上侧板模式)的顺应性纳入模型,可将八重奏的频率预测在±20%范围内得到改善。