王洪超, 李强, 罗毅, 王文, 王立坤, 张弢甲. 基于相似度的管道泄漏负压波定位算法[J]. 油气储运, 2021, 40(6): 679-684. DOI: 10.6047/j.issn.1000-8241.2021.06.011
引用本文: 王洪超, 李强, 罗毅, 王文, 王立坤, 张弢甲. 基于相似度的管道泄漏负压波定位算法[J]. 油气储运, 2021, 40(6): 679-684. DOI: 10.6047/j.issn.1000-8241.2021.06.011
WANG Hongchao, LI Qiang, LUO Yi, WANG Wen, WANG Likun, ZHANG Taojia. A similarity based locating method of negative pressure wave caused by pipeline leakage[J]. Oil & Gas Storage and Transportation, 2021, 40(6): 679-684. DOI: 10.6047/j.issn.1000-8241.2021.06.011
Citation: WANG Hongchao, LI Qiang, LUO Yi, WANG Wen, WANG Likun, ZHANG Taojia. A similarity based locating method of negative pressure wave caused by pipeline leakage[J]. Oil & Gas Storage and Transportation, 2021, 40(6): 679-684. DOI: 10.6047/j.issn.1000-8241.2021.06.011

基于相似度的管道泄漏负压波定位算法

A similarity based locating method of negative pressure wave caused by pipeline leakage

  • 摘要: 常用的负压波管道泄漏监测技术是通过计算压力下降拐点时刻,得到负压波到达上下游的时间差来定位泄漏点位置,但受负压波传播衰减、缓慢泄漏压力变化小、噪声干扰等影响,压力的下降拐点不明显,无法准确计算得到时间差,降低了泄漏点的定位精度。为了减少负压波泄漏监测技术的定位误差,基于管道泄漏上下游同时传播的负压波同源的特点,采用欧氏距离计算上下游负压波之间的相似度,可得到负压波向上下游传播的时间差,进而变换得到泄漏点位置。经现场应用测试,结果表明:该方法可准确定位管道突发泄漏和缓慢泄漏的位置,定位准确度高,弥补了原有的负压波管道泄漏监测技术对较缓慢泄漏定位不准的不足,将原有系统简单升级即可实现性能提升。

     

    Abstract: The common negative pressure wave based pipeline leakage detection technology is to locate the leakage based on the time difference of the negative pressure wave reaching the upstream and downstream obtained by calculating the pressure drop point. However, the locating accuracy of leakage is reduced for the pressure drop point is not obvious due to the influence of propagation attenuation of pressure wave, little pressure variation in slow leakage and interference of noises. In order to reduce the locating error of the negative pressure wave based leakage monitoring technology, the propagation time difference of the negative pressure wave transmitting to the upstream and downstream can be obtained by calculating its similarity with Euclidean distance based on its homologous characteristics, which can be further converted into the location of leakage. By field test, the results indicate that: In this way, the abrupt and slow leakage of pipeline can be located accurately, the deficiency of the original negative pressure wave based pipeline leakage monitoring technology for inaccurate locating of slow leakage can be compensated, and the performance can be realized by simply upgrading the original system.

     

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