Duan Wenbo, Kirby Ray, Mudge Peter
Brunel Innovation Centre, Brunel University, Uxbridge, Middlesex UB8 3PH, UK.
School of Engineering and Design, Brunel University, Uxbridge, Middlesex UB8 3PH, UK.
Ultrasonics. 2016 Feb;65:228-41. doi: 10.1016/j.ultras.2015.09.019. Epub 2015 Oct 1.
Viscoelastic coatings are often used to protect pipelines in the oil and gas industry. However, over time defects and areas of corrosion often form in these pipelines and so it is desirable to monitor the structural integrity of these coated pipes using techniques similar to those used on uncoated pipelines. A common approach is to use ultrasonic guided waves that work on the pulse-echo principle; however, the energy in the guided waves can be heavily attenuated by the coating and so significantly reduce the effective range of these techniques. Accordingly, it is desirable to develop a better understanding of how these waves propagate in coated pipes with a view to optimising test methodologies, and so this article uses a hybrid SAFE-finite element approach to model scattering from non-axisymmetric defects in coated pipes. Predictions are generated in the time and frequency domain and it is shown that the longitudinal family of modes is likely to have a longer range in coated pipes when compared to torsional modes. Moreover, it is observed that the energy velocity of modes in a coated pipe is very similar to the group velocity of equivalent modes in uncoated pipes. It is also observed that the coating does not induce any additional mode conversion over and above that seen for an uncoated pipe when an incident wave is scattered by a defect. Accordingly, it is shown that when studying coated pipes one need account only for the attenuation imparted by the coating so that one may normally neglect the effect of coating on modal dispersion and scattering.
粘弹性涂层常用于石油和天然气行业的管道保护。然而,随着时间的推移,这些管道中常常会形成缺陷和腐蚀区域,因此需要使用与未涂层管道类似的技术来监测这些涂层管道的结构完整性。一种常见的方法是使用基于脉冲回波原理的超声导波;然而,导波中的能量会被涂层严重衰减,从而显著降低这些技术的有效检测范围。因此,有必要更好地了解这些波在涂层管道中的传播方式,以优化测试方法,本文采用 SAFE 有限元混合方法对涂层管道中非轴对称缺陷的散射进行建模。在时域和频域中生成了预测结果,结果表明,与扭转模态相比,纵向模态族在涂层管道中的传播距离可能更长。此外,还观察到涂层管道中模态的能量速度与未涂层管道中等效模态的群速度非常相似。还观察到,当入射波被缺陷散射时,涂层不会在未涂层管道所见的模式转换之外引起任何额外的模式转换。因此,结果表明,在研究涂层管道时,只需考虑涂层带来的衰减,这样通常可以忽略涂层对模态色散和散射的影响。