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Localization of continuous gas leaks from a flat-surface structure using an Acoustic Emission sensor array

机译:使用声发射传感器阵列对来自平面结构的连续气体泄漏进行定位

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Leak localization is of great importance for pressurized vessels for reasons of safety and maintenance. This paper presents an experimental study using an Acoustic Emission sensor array coupled with a hyperbolic positioning algorithm for continuous leak localization. The study aims to detect continuous CO2 leak from an isotropic flat-surface structure on a pressurized vessel in the Carbon Capture and Storage system. The proposed approach consists of four main stages. In the first stage, empirical mode decomposition is deployed to extract the useful signal from the noise. The second step is concerned with the estimation of the time differences of the sensor array in conjunction with correlation signal processing. The third stage estimates the distance difference between the sensing elements from the measured time differences and wave speed. Finally, a hyperbolic positioning algorithm is used to locate the leak source on the flat-surface structure. Results obtained from experiments on a 100 cm × 100 cm stainless plate demonstrate that the mean full-scale error in the leak localization is 4.9%.
机译:出于安全和维护的考虑,对于压力容器来说,泄漏的定位非常重要。本文介绍了使用声发射传感器阵列结合双曲线定位算法进行连续泄漏定位的实验研究。该研究旨在检测碳捕集与封存系统中加压容器上各向同性平面结构的连续CO2泄漏。提议的方法包括四个主要阶段。在第一阶段,采用经验模式分解从噪声中提取有用信号。第二步涉及与相关信号处理结合的传感器阵列时间差的估计。第三阶段根据测得的时间差和波速估计传感元件之间的距离差。最后,采用双曲线定位算法在平面结构上定位泄漏源。在100 cm×100 cm不锈钢板上进行的实验获得的结果表明,泄漏定位的平均满量程误差为4.9%。

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