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Modeling of the KOH-Polarization cells for mitigating the induced AC voltage in the metallic pipelines

机译:用于减轻金属管道中感应的AC电压的KOH-极化电池建模

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摘要

The problem of AC corrosion remains motivating for researchers because many factors influence the corrosion rate for buried pipelines due to the interference with overhead high voltage transmission lines (OHVTLs). Many researchers study the mechanisms of induced alternating current (AC) voltages, which are summarized as capacitive, inductive, and conductive coupling. In this work, only the induced AC voltage on the pipelines due to inductive coupling in steady-state conditions is studied. A holistic mathematical model for the pipelines, power lines, mitigation equipment for the induced voltage, and cathodic protection (CP) is illustrated. Potassium hydroxide polarization cells are electrically represented because these cells are considered the most common mitigation device for discharging the induced AC voltage from the pipeline to the soil. The overall model is implemented using MATLAB. The results show the profiles of induced AC voltage along the pipeline, the CP for the pipeline, the points of maximum voltage, and the influence of installing the AC mitigation units on the CP performance.
机译:AC腐蚀问题仍然吸引着研究人员,因为许多因素都会影响对地下管线的腐蚀速率,这是由于它们受到架空高压传输线(OHVTL)的干扰。许多研究人员研究了感应交流(AC)电压的机制,概括为电容性,电感性和导电性耦合。在这项工作中,仅研究稳态条件下由于电感耦合而在管道上产生的交流电压。说明了管道,电力线,感应电压的缓解设备以及阴极保护(CP)的整体数学模型。用电表示氢氧化钾极化电池,因为这些电池被认为是用于将感应的交流电压从管道释放到土壤的最常用的缓解装置。总体模型是使用MATLAB实现的。结果显示了沿管道感应的交流电压的分布,管道的CP,最大电压点以及安装AC缓解装置对CP性能的影响。

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