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An approach to construct a three-dimensional isogeometric model from μ-CT scan data with an application to the bridge of a violin

机译:一种从μ-CT扫描数据构建三维等几何模型的方法及其在小提琴琴桥中的应用

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摘要

We present an algorithm to build a ready to use isogeometric model from scan data gained by a μ-CT scan. Based on a three-dimensional multi-patch reference geometry, which includes the major topological features, we fit the outline, then the cross-section and finally the three-dimensional geometry. The key step is to fit the outline, where a non-linear least squares problem is solved with a Gauss-Newton approach presented by Borges and Pastva (2002). We extend this approach by a regularisation and a precise interpolation of selected data points. The resulting NURBS geometry is ready for applying isogeometric analysis tools for efficient numerical simulations. As a particular example we examine the scan data of a violin bridge and present the complete workflow from the μ-CT scan up to the numerical simulation based on isogeometric mortar methods. We illustrate the relevance of the constructed geometry with a vibro-acoustical application.
机译:我们提出一种从μ-CT扫描获得的扫描数据中建立可立即使用的等几何模型的算法。基于包含主要拓扑特征的三维多面体参考几何,我们拟合轮廓,然后是横截面,最后是三维几何。关键步骤是拟合轮廓,其中非线性最小二乘问题由Borges和Pastva(2002)提出的高斯-牛顿方法求解。我们通过对选定数据点进行正则化和精确插值来扩展此方法。生成的NURBS几何准备好应用等几何分析工具进行高效的数值模拟。作为一个特定示例,我们检查了小提琴琴桥的扫描数据,并介绍了从μ-CT扫描到基于等几何砂浆方法的数值模拟的完整工作流程。我们举例说明了构建的几何体与振动声应用的相关性。

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