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首页> 外文期刊>International journal of applied electromagnetics and mechanics >FEM comparisons between RF-ECT signals in quasi-static or transient and linear or nonlinear regimes: ECT probe speed effect for in-service inspection of magnetic SG tubes in FBR
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FEM comparisons between RF-ECT signals in quasi-static or transient and linear or nonlinear regimes: ECT probe speed effect for in-service inspection of magnetic SG tubes in FBR

机译:准静态或瞬态以及线性或非线性状态下RF-ECT信号之间的FEM比较:ECT探头对FBR中磁性SG管的在役检查的速度影响

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Two-dimensional axis-symmetric finite element method (FEM) simulations are conducted to study remote field eddy current testing (RF-ECT) in ferromagnetic steam generator (SG) tubes for fast breeder reactors (FBR). The present work investigates a combination of quasi-static and transient analysis with both linear and non-linear material properties. Two FEM codes are employed: a commercial one based on COMSOL and a 2D-FEM code developed in-house. Both codes are used to evaluate the influence of the speed of the ECT probe during in-service inspection of SG tubes at a low excitation frequency. As a result, the maximum error in SG tube defect detection when using the classical linear and quasi-static approximations is obtained.
机译:进行了二维轴对称有限元方法(FEM)仿真,以研究快速增殖反应堆(FBR)的铁磁蒸汽发生器(SG)管中的远程场涡流测试(RF-ECT)。本工作研究了具有线性和非线性材料特性的准静态和瞬态分析的组合。使用两种FEM代码:基于COMSOL的商业代码和内部开发的2D-FEM代码。这两个代码均用于评估在低激励频率下对SG管进行在线检查期间ECT探头速度的影响。结果,当使用经典的线性和准静态近似值时,获得了SG管缺陷检测中的最大误差。

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