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Structural Health Monitoring of Above-Ground Storage Tank Floors by Ultrasonic Guided Wave Excitation on the Tank Wall

机译:罐壁超声导波激励对地面以上储罐底板结构健康的监测

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摘要

There is an increasing interest in using ultrasonic guided waves to assess the structural degradation of above-ground storage tank floors. This is a non-invasive and economically viable means of assessing structural degradation. Above-ground storage tank floors are ageing assets which need to be inspected periodically to avoid structural failure. At present, normal-stress type transducers are bonded to the tank annular chime to generate a force field in the thickness direction of the floor and excite fundamental symmetric and asymmetric Lamb modes. However, the majority of above-ground storage tanks in use have no annular chime due to a simplified design and/or have a degraded chime due to corrosion. This means that transducers cannot be mounted on the chime to assess structural health according to the present technology, and the market share of structural health monitoring of above-ground storage tank floors using ultrasonic guided wave is thus limited. Therefore, the present study investigates the potential of using the tank wall to bond the transducer instead of the tank annular chime. Both normal and shear type transducers were investigated numerically, and results were validated using a 4.1 m diameter above-ground storage tank. The study results show shear mode type transducers bonded to the tank wall can be used to assess the structural health of the above-ground tank floors using an ultrasonic guided wave. It is also shown that for the cases studied there is a 7.4 dB signal-to-noise ratio improvement at 45 kHz for the guided wave excitation on the tank wall using shear mode transducers.
机译:使用超声波引导来评估地上储油罐地板的结构退化越来越引起人们的兴趣。这是评估结构退化的一种非侵入性且在经济上可行的方法。地上储罐地板是老化的资产,需要定期检查以避免结构故障。目前,将正应力型换能器结合到储罐环形铃上,以在地板的厚度方向上产生力场,并激发基本对称和不对称的Lamb模式。然而,由于简化的设计,在使用中的大多数地上储罐不具有环形风铃和/或由于腐蚀而具有降低的风铃。这意味着根据本技术,不能将换能器安装在钟形件上以评估结构健康,并且因此限制了使用超声波引导的地上储罐地板的结构健康监测的市场份额。因此,本研究调查了使用储罐壁来粘接换能器而不是储罐环形钟声的潜力。对普通型和剪切型换能器进行了数值研究,并使用直径为4.1 m的地面储罐验证了结果。研究结果表明,结合在罐壁上的剪切模式型换能器可用于利用超声波导波评估地上罐壁的结构健康状况。还表明,对于所研究的情况,使用剪切模式传感器在罐壁上的导波激励在45 kHz时信噪比提高了7.4 dB。

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