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Experimental Study on the Influence of AC Stray Current on the Cathodic Protection of Buried Pipe

机译:交流杂散电流对埋管阴极防护影响的实验研究

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摘要

The size of the damaged area of the coating and its position on the pipeline impacted the cathodic protection potential, and there was a damaged area of the greatest impact value. When damaged area was 300 mm2, the IR drop was the largest, and this situation could easily lead to inadequate protection; when the parallel spacing between pipeline and interference source was unchanged, the measured value curves of cathodic protection potential presented “U” shaped trend with the increasing stray current interference intensity. Under certain parallel spacing between pipeline and interference source, high alternating stray current intensity would cause serious negative offsets, so that the overprotection of the pipeline occurred, and make the coating crack; there was a parallel threshold length. When less than the threshold, the pipe-ground potential increases rapidly with the parallel length increasing. In order to judge whether a pipeline was interference by AC stray current and the risk of stray current corrosion, we should make a comprehensive analysis of the cathodic protection energizing potential, the switch-off potential, AC pipe-soil potential, IR drops, and so on.
机译:涂料及其对管线位置的受损区域的大小影响了阴极保护电位,并有最大的影响值的受损区域。当受损面积为300 mm2时,IR压降是最大的,而且这种情况很容易导致保障不足;当管道与干扰源之间的平行间距保持不变,阴极保护电位的测量值曲线呈现“U”与增加杂散电流干涉强度成型的趋势。下管道和干扰源之间的某些平行的间距,交替的高杂散电流强度会导致严重的负偏移,因此所发生的流水线的过度保护,使涂层裂纹;有一个平行阈值长度。当小于阈值时,所述管接地电位迅速增大与平行长度的增加。为了判断是否管道是通过交流干扰杂散电流和杂散电流腐蚀的危险,我们应该使阴极保护的综合分析激励潜力,关停潜力,AC管地电位,IR压降和很快。

著录项

  • 作者

    Qingmiao Ding; Yueming Fan;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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