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Modern AC Mitigation Performance Testing and Comparison

机译:现代交流缓解性能测试和比较

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AC mitigation has become an absolute necessity for pipeline operators due to safety concerns and the risk of through-wall corrosion leaks as a result of induced AC. AC mitigation systems have evolved to use one of three grounding systems: zinc ribbon anode, bare copper cable and an engineered system utilizing a copper conductor with machine packed grounding backfill. All can be connected to solid-state DC decoupling devices. This paper provides a comparison of these metallic grounding systems. A test bed was constructed at an electric and gas utility facility with intensive overhead electrical transmission and the site of a documented 2002 steel gas transmission pipeline AC through-wall corrosion leak. The test bed was constructed to individually test the zinc ribbon anode, bare copper grounding and the engineered system to measure their ability to reduce the induced AC voltage. Field test data is provided and conclusions are made regarding the performance of the three grounding systems. The test bed also provides insight regarding spatial effects of the grounding system, including lateral alignment and cover depth relative to the positioning of the steel pipeline. Field test data suggests that AC mitigation installed laterally at a distance of ten feet (3 meters) or more from the pipeline is more effective. This also results in an increased working space that provides a clear safety benefit to the grounding system installers.
机译:出于安全方面的考虑,以及由于引入交流电而导致穿墙腐蚀泄漏的风险,缓解交流电已成为管道运营商的绝对必要条件。交流缓解系统已经发展为使用三种接地系统之一:锌带阳极,裸铜电缆和利用铜导体与机器封装的接地回填配合使用的工程系统。全部都可以连接到固态直流去耦设备。本文对这些金属接地系统进行了比较。在电力和天然气公用事业设施上建造了一个试验台,该设施具有高架空电气传输,并且有文献记载的2002年钢制气体传输管道AC贯穿壁腐蚀泄漏的位置。测试台的构造可单独测试锌带阳极,裸铜接地和工程系统,以测量其降低感应交流电压的能力。提供了现场测试数据,并得出了有关三种接地系统性能的结论。测试台还提供了有关接地系统的空间影响的见解,包括横向对准和相对于钢管位置的覆盖深度。现场测试数据表明,在距管道十英尺(3米)或更远的地方横向安装AC缓解措施更为有效。这也导致增加的工作空间,从而为接地系统安装人员提供明显的安全益处。

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