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Reflection of torsional T(0,1) guided waves from defects in pipe bends

机译:扭转T(0,1)导波从管道弯曲缺陷反射

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摘要

This paper investigates the reflection of the torsional T(0,1) mode from defects in pipe bends. The effect of varying circumferential and angular position along the pipe bend, as well as the influence of the bend radius, is investigated via 3D finite element simulations. The results show that the reflection expected from a small defect varies significantly with position, the minimum reflection coefficient being about 10% of that from a comparable defect in a straight pipe, while maxima of around four times the straight pipe value are seen. The areas of low detectability are mainly found on the bend intrados and those of high detectability close to its extrados; similar effects are seen in bends with radii varying from one to twenty pipe diameters. It is shown that the reflection from a defect at a given location is roughly proportional to the square of the von Mises stress produced by the transmitted wave at that position. This holds for defects such as circumferential cracks, the detailed subject of this investigation, and is also expected to be valid for corrosion patches; it will not hold for axial cracks. The results explain the low reflection seen from a simulated corrosion defect at a bend in a previous investigation.
机译:本文研究了弯管缺陷产生的扭转T(0,1)模式的反射。通过3D有限元模拟研究了沿弯管改变圆周和角位置的影响以及弯管半径的影响。结果表明,由小缺陷引起的反射随位置的变化很大,最小反射系数约为直管中类似缺陷的反射系数的10%,而最大反射系数约为直管值的四倍。可检测性低的区域主要位于弯曲的拱内,而靠近拱形的区域则具有较高的可探测性。在半径从1到20的管道直径变化的弯曲中也可以看到类似的效果。结果表明,缺陷在给定位置的反射大致与该位置的透射波所产生的冯·米塞斯应力的平方成正比。这适用于诸如周向裂纹等缺陷,这是本研究的详细主题,并且也有望对腐蚀斑有效。它不会保持轴向裂纹。结果解释了先前研究中从弯曲处的模拟腐蚀缺陷看到的低反射率。

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