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A generic hybrid model for bulk elastodynamics, with application to ultrasonic nondestructive evaluation

机译:体积弹性动力学的通用混合模型,用于超声非破坏性评估

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摘要

Practical ultrasonic inspection requires modeling tools that enable rapid and accurate visualization; because of the increasing sophistication of practical inspection, it is becoming increasingly difficult to use a single modeling method to represent an entire inspection process. Hybrid models that utilize different or interacting numerical schemes in different regions, to use their relative advantages to maximal effect, are attractive in this context, but are usually custom-made for specific applications or sets of modeling methods. The limitation of hybrid schemes to particular modeling techniques is shown here to be related to their fundamental formulation. As a result, it becomes clear that a formalism to generalize hybrid schemes can be developed: an example of the construction of a generic hybrid modeling interface is given for the abstraction of bulk ultrasonic wave phenomena, common in practical inspection problems. This interface is then adapted to work within a prototype hybrid model consisting of two smaller finite element model-domains, and explicitly demonstrated for bulk ultrasonic wave propagation and scattering examples. Sources of error and ways to improve the accuracy of the interface are also discussed.
机译:实际的超声检查需要建模工具,以实现快速,准确的可视化;由于实际检查越来越复杂,使用单一的建模方法来代表整个检查过程变得越来越困难。在不同情况下,利用不同区域中不同或相互影响的数值方案以发挥其相对优势以发挥最大作用的混合模型在这种情况下很有吸引力,但通常是为特定应用或一组建模方法定制的。混合方案对特定建模技术的局限性在此处显示为其基本表述。结果,很明显,可以开发出一种可以概括混合方案的形式主义:给出了一个通用混合建模接口的构造示例,以抽象出实际检查中常见的体超声波现象。然后,该接口适合在包含两个较小的有限元模型域的原型混合模型中工作,并针对大量超声波传播和散射示例进行了明确演示。还讨论了错误来源以及提高接口准确性的方法。

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