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The Joy of Computing with Volume Integrals: Validation and Performance Comparison

机译:使用体积积分进行计算的乐趣:验证和性能比较

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摘要

This is the second paper in a series dealing with the application of computational electromagnetics to nondestructive evaluation, using the vehicle of volume-integral equations, as developed in the preceding paper in this volume. A challenge-problem in the field of nondestructive evaluation is the inspection of fastener sites for fatigue cracks in multilayer structures. Using the volume-integral equation approach, problems comprising multilayer structures, ferromagnetic fastener sites, gaps between materials interfaces, and the presence of fatigue cracks are accurately modeled. Simulated studies are presented with VIC-3D~?, a proprietary volume-integral code, and comparisons are made with FEM highlighting performance advantages of the VIE approach. Further, the role that volume-integral equations play in the context of other well-known computational-electromagnetic algorithms is discussed.
机译:这是本系列中的第二篇论文,涉及使用体积积分方程的载体将计算电磁学应用到无损评估中,正如先前在本卷中所开发的那样。非破坏性评估领域的一个难题是检查紧固件位置是否存在多层结构中的疲劳裂纹。使用体积积分方程法,可以对包括多层结构,铁磁紧固件位置,材料界面之间的间隙以及疲劳裂纹的存在等问题进行精确建模。使用专有的体积积分代码VIC-3D〜?进行了仿真研究,并通过FEM进行了比较,突出了VIE方法的性能优势。此外,还讨论了体积积分方程在其他众所周知的计算电磁算法中的作用。

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