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Experimental Model Investigation of the Corrosion of Buried Steel Pipelines with Cathodic Protection near High Voltage Power Lines

机译:高压电力线附近阴极保护埋藏钢管腐蚀的实验模型研究

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The protection from corrosion of buried Pipelines used to transport gas and oil is always ensured by an insulation coating and secondly by a cathodic protection (CP), the latter reduces the corrosion and avoids eventual damage. But when pipelines are near a high voltage power lines, an alternating current (AC) is induced, thus causes the perturbation of the protection, and then serious damage by corrosion will take place. Our study aims to explain the basic mechanisms of corrosion (electrical and electrochemical) by the alternating current and how to minimize its impact on pipelines. Firstly, rigorous theoretical research showed us the main AC corrosion mechanism models and the standards illustrate zones of corrosion and immunity. Secondly, we conducted electrochemical tests on a laboratory sample (API 5L X52 pipeline). Thirdly, we did a simulation study in order to, digitally, represent the CP phenomenon, AC corrosion, and optimizing AC corrosion behavior by changing the CP in case of AC' interferences, by a monitoring program, which brings the process status to the immunity zone according to standards.
机译:从用于输送天然气和石油埋管线腐蚀保护总是由一绝缘涂层和其次确保由一个阴极保护(CP),后者降低了腐蚀,避免了最终的损坏。但是当管道靠近高压电力线时,诱导交流电流(AC),从而导致保护的扰动,然后将发生腐蚀的严重损坏。我们的研究旨在通过交流电流解释腐蚀(电气和电化学)的基本机制以及如何最大限度地减少其对管道的影响。首先,严格的理论研究表明,美国的主要腐蚀机制模型和标准说明了腐蚀和免疫区域。其次,我们在实验室样品(API 5L X52管道)上进行了电化学测试。第三,我们做了模拟研究,以便以数字方式代表CP现象,交流腐蚀和通过改变CP,通过监测程序改变CP,通过监测程序将过程状态带到免疫力根据标准的区域。

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