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Efficient Modeling of ECT Signals for Realistic Cracks in Layered Half-Space

机译:分层半空间中真实裂缝的ECT信号高效建模

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摘要

Efficient modeling of eddy current testing (ECT) signals is needed in many areas of industry. Design of probes may be improved and interpretation of experimental signals better understood by using dedicated numerical simulation tools, if they are computationally effective and accurate, yet remain simple enough to be applied at an end-user level. A boundary element method (BEM), dedicated to the numerical simulation of ECT signals due to complex narrow cracks within a planar multilayered structure (PMS) and presenting arbitrary orientations, is investigated. The theoretical formulation relies on the calculation of the dyadic Green operator, associated to the PMS, via appropriate vector wave function expansions. Then, the use of the discrete complex image method followed by the application of the generalized pencil of function method is proposed for efficient computation of this operator. Results of the validation of the complete model by comparison with the experimental data acquired in the laboratory-controlled conditions and with data computed by a finite element code are discussed.
机译:在许多工业领域中,都需要对涡流测试(ECT)信号进行高效建模。如果使用专用的数值模拟工具,则可以提高探针的设计并更好地理解实验信号的解释,前提是它们在计算上有效且准确,但仍然足够简单,可以在最终用户级别应用。研究了一种边界元方法(BEM),该方法专用于ECT信号的数值模拟,该信号是由于平面多层结构(PMS)中的复杂窄裂纹导致的,并呈现任意方向。理论公式依赖于通过适当的矢量波函数展开对与PMS相关的二进位Green算符的计算。然后,提出了使用离散复杂图像方法,然后应用广义铅笔函数法来对该算子进行有效计算的方法。通过与在实验室控制条件下获得的实验数据以及由有限元代码计算出的数据进行比较,讨论了完整模型的验证结果。

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