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Mitigating Pipeline AC Interference Using Numerical Modeling and Continuous AC Voltage Monitoring

机译:使用数值建模和连续交流电压监控,减轻管道交流干扰

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With the rapid construction of high voltage alternating current (AC) transmission lines, AC interference problem is becoming a new threat to the pipeline safety, especially for pipelines coated with high quality coating, such as 3PE~+. Solid State DC Decoupler and Zinc ribbon groundbed AC mitigation system is the most commonly used mitigation method. But the locations of the mitigation system and the size of the zinc ribbon grounding system still remains a problem for most engineers. In this paper, numerical modeling software is used to fit the real field AC interference data to verify the rationality of related boundary settings. Then possible AC mitigation solutions are evaluated and optimized based on the verified software boundary settings. When it comes to field application, continuous pipe to soil (P/S) AC voltage monitoring units were installed at typical test stations to simultaneously obtain how AC voltage changes with installation. The AC mitigation practice showed that numerical modeling is a great tool for solution design and mitigation effectiveness evaluation, which can eliminate unnecessary mitigation points and to control the cost. Simultaneous AC potential monitoring at typical test stations will provide a complete data record, which can provide engineer a deep understanding how each mitigation point influences the entire AC voltage distribution along the affected pipeline.
机译:随着高压交流电流(AC)传输线的快速结构,AC干扰问题正成为对管道安全的新威胁,特别是对于涂有高质量涂层的管道,例如3PE〜+。固态直流去耦和锌丝带地下型AC缓解系统是最常用的缓解方法。但减缓系统的位置和锌丝带接地系统的大小仍然是大多数工程师的问题。在本文中,使用数值建模软件适合真实的AC干扰数据来验证相关边界设置的合理性。然后根据已验证的软件边界设置进行评估和优化可能的AC缓解解决方案。涉及现场应用时,在典型的测试站安装到土壤(P / S)交流电压监测单元的连续管道同时获得AC电压如何随安装而变化。 AC缓解实践表明,数值建模是解决方案设计和缓解效率评估的伟大工具,可以消除不必要的缓解点并控制成本。在典型测试站同时潜在监控将提供完整的数据记录,可以为每个缓解点沿着受影响的流水线影响整个AC电压分布的深度理解。

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