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Spectral subtraction and enhancement for torsional waves propagating in coated pipes

机译:涂布管中传播扭转波的光谱减法和增强

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Ultrasonic guided waves are routinely used for inspection of pipelines. The technique is well established for uncoated pipes where attenuation is very low. However, when the pipe is coated, buried or immersed, sound energy will be absorbed by the coating or radiate into the surrounding medium. Attenuation will increase and the scanning distance will be significantly reduced. The noise level can also increase when the condition of the coating material degrades with age and the bonding condition between pipe and coating becomes unevenly distributed. The increase of attenuation ratio and noise level therefore makes the inspection of ultrasonic waves propagating in coated and buried pipelines particularly difficult. It is often desirable to identify small features amongst the noise floor. To improve signal to noise ratio under these conditions, two techniques are proposed for the study of the propagation of torsional waves in Denso Tape coated pipes. A frequency domain, backward wave cancelling algorithm is used to eliminate the reflected waves coming from the backward direction and clean up the signal. On this basis, a spectral subtraction method is used, which requires knowledge of a small section of pipe that includes no real features, so that the signal from this region provides the characteristic noise signature of the pipe itself. The spectrum of the noise signature is calculated and then subtracted from the total signal using a sliding window technique. Furthermore, a signal region, for instance, the reflected signal from a pipe weld or end, is specified. This represents the characteristic of the incident signal and any signal similar in shape will be enhanced using the sliding window technique. These two techniques serve to reduce the noise floor and enhance small signals that may be buried in it. This is important for ultrasonic non-destructive testing applications in coated and buried pipes.
机译:超声波引导波是常规用于管道的检查。该技术对于未涂覆的管道建立了很好的建立,其中衰减非常低。然而,当管涂覆,埋入或浸没时,声能将被涂层吸收或辐射到周围介质中。衰减将增加,扫描距离将显着降低。当涂层材料的状况随着年龄的增长和管道和涂层之间的粘合条件变得不均匀分布时,噪声水平也会增加。因此,衰减率和噪声水平的增加使得超声波在涂覆和掩埋管道中传播的超声波的检查特别困难。通常希望识别噪声地板中的小功能。为了在这些条件下提高信噪比,提出了两种技术,用于研究Denso胶带涂层管中的扭转波的传播。频域,后向波取消算法用于消除来自向后方向的反射波并清理信号。在此基础上,使用光谱减法方法,这需要了解包括没有实体特征的小部分管道,从而来自该区域的信号提供管道本身的特征噪声特征。计算噪声签名的频谱,然后使用滑动窗技术从总信号中减去。此外,指定了信号区域,例如,来自管道焊接或结束的反射信号。这表示入射信号的特性和使用滑动窗技术将增强相似的任何信号的信号。这两种技术用于减少噪声底板并增强可能埋在其中的小信号。这对于涂层和埋地管中的超声波无损检测应用非常重要。

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