首页> 外文会议>IMAC Conference and Exposition on Structural Dynamics >Model-Based Decision Support Methods Applied to the Conservation of Musical Instruments: Application to an Antique Cello
【24h】

Model-Based Decision Support Methods Applied to the Conservation of Musical Instruments: Application to an Antique Cello

机译:基于模型的决策支持方法应用于乐器保护:应用于古董大提琴

获取原文

摘要

In musical instrument making and restoration domains, the variability of the materials and the irreversibility of the changes are issues for the experimental study of the impact of design changes and restorations on musical instruments. In addition, the analytical methods based on simplified geometries and models are not sufficiently detailed for the study of complex structures and phenomena. The virtual prototyping, and its different capabilities, can be a powerful method for instrument makers and museum curators as a decision support tool. Nevertheless, the accuracy of the model is an important matter to assess good predictions. In the case of antique and unique instruments, it is sometimes hard to obtain exhaustive geometrical properties. Similarly, it is also difficult to evaluate the material properties of full instruments, and this uncertainty may have a strong impact on the output features of the numerical models. In this study, a numerical model of cello is developed using finite element method. It is used to evaluate the impact of a modification of a geometrical property on dynamical features. It is shown that the lack of knowledge on the arching height of the top and back plates of a cello has a strong impact on the computed dynamical properties of the cello. Secondly, the model is considered with and without repair cleats and defects like galleries excavated by wood-boring insects. It is observed that the bridge admittance exhibits discrepancies above 220 Hz which is in the low frequencies domain of the model and quantify the impact of repairs. This model capability is a starting point for further simulations accounting for material and geometrical uncertainties and to assess the confidence level of a model for restoration issues.
机译:在乐器制作和恢复结构域中,材料的可变性和变化的不可逆转性是对设计变化和修复对乐器的影响的实验研究的问题。此外,对于复杂结构和现象的研究,基于简化几何形状和模型的分析方法对于研究而言,不充分详细说明。虚拟原型制作及其不同的功能,可以是仪器制造商和博物馆策展人作为决策支持工具的强大方法。尽管如此,模型的准确性是评估良好预测的重要事项。在古董和独特的仪器的情况下,有时难以获得详尽的几何特性。类似地,难以评估全文的材料特性,并且这种不确定性可能对数值模型的输出特征产生强烈影响。在该研究中,使用有限元方法开发了大提琴的数值模型。它用于评估几何性质对动态特征的修改的影响。结果表明,对大提琴顶部和背板的拱形高度缺乏知识对大提琴的计算动力学性质产生了强烈影响。其次,模型被考虑,无需修复夹板和缺陷的缺陷,如木材 - 无聊的昆虫挖掘出来。观察到,桥接终止呈现出高于220Hz的差异,该差异是模型的低频域并量化维修的影响。这种型号能力是进一步模拟核算材料和几何不确定性的起点,并评估恢复问题模型的置信水平。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号