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FIELD STUDIES ON THE PREDICTION METHOD OF INDUCED AC LEVEL ON BURIED PIPELINES USING MAGNETIC FIELD SENSORS

机译:磁场传感器在管道上感应交流电预测方法的现场研究

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摘要

There is a risk of alternating current (AC) corrosion on pipelines that are buried in proximity to overhead AC power transmission lines due to induced AC caused by magnetic fields around the power transmission lines. Grounding of the line pipes is generally applied for the mitigation of induced AC.rnIn the present paper, studies were conducted to predict the induced AC level through the measurement of magnetic flux density using magnetic field sensors. The relationship between magnetic flux density and induced AC level was then obtained through theoretical studies. In addition, as a result of field tests conducted on an existing pipeline buried in proximity to power transmission lines, induced AC level could be predicted through the measurement of magnetic flux density using magnetic field sensors above the pipeline route. Magnetic flux density can be measured regardless of the number and location of power transmission lines as well as other metallic structures, and therefore it is expected that the AC prediction method using magnetic field sensors can be applied on the pipelines buried in proximity to multiple power transmission lines and/or to other metallic structures with complicated configuration.
机译:由于电力传输线周围的磁场引起的感应交流电,埋在高架交流电传输线附近的管道上存在交流电(AC)腐蚀的风险。管道的接地通常用于减轻感应交流电。在本文中,进行了研究以通过使用磁场传感器测量磁通密度来预测感应交流电水平。然后通过理论研究获得了磁通密度和感应交流电水平之间的关系。另外,作为对埋在电力传输线附近的现有管道进行现场测试的结果,可以通过使用管道上方的磁场传感器测量磁通密度来预测感应交流电水平。可以测量磁通密度,而与输电线路以及其他金属结构的数量和位置无关,因此,期望可以将使用磁场传感器的AC预测方法应用于埋在多路输电附近的管道上。线和/或其他结构复杂的金属结构。

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  • 来源
  • 会议地点 Calgary(CA);Calgary(CA);Calgary(CA)
  • 作者单位

    Pipeline Department, Tokyo Gas Co., Ltd. Tokyo, Japan;

    Engineering Support Center, Nippon Steel Engineering Co., Ltd. Sagamihara, Kanagawa, Japan;

    Graduate School of Electrical Engineering, Doshisha University Kyo-tanabe, Japan;

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  • 原文格式 PDF
  • 正文语种 eng
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