硅铁阳极断缆故障的双参比直流电位梯度检测技术与应用

Dual-reference DC potential gradient detection technology for ferrosilicon anode broken cable faults

  • 摘要: 本文针对站场复杂环境中硅铁阳极断缆故障检测难题,提出了基于直流电位梯度测量的“双参比法”检测技术。通过系统分析传统检测方法在站场环境中的失效机理,建立了硅铁阳极地床电流场分布模型,开发了基于双参比电极的直流电压差测量方法。现场试验表明:该方法在接地电阻高、杂散电流密度大的强干扰环境下,可实现断缆故障100%检出率,定位精度达±1.5 m。相较于传统交流电位梯度法(alternating current voltage gradient,ACVG)、1/2法,提升了检测效率,降低了设备成本,减少了单次故障排查成本。研究证实,双参比法通过测量阳极地床直流电位梯度(故障特征值0V),有效克服了站场电磁干扰和信号串流问题,为复杂环境下的阴极保护硅铁阳极断缆故障排查提供了创新解决方案。

     

    Abstract: In this paper, a "dual-reference" detection technology based on DC potential gradient measurement was proposed to address the challenge of detecting ferrosilicon anode broken cable faults in complex station environments. The failure mechanisms of traditional detection methods in station environments were systematically analyzed, leading to the establishment of a current field distribution model for the ferrosilicon anode ground bed and the development of a DC voltage difference measurement method using dual-reference electrodes. Field tests demonstrated that a 100% detection rate for broken cable faults and a positioning accuracy of ±1.5 m could be achieved, even in strong interference environments with high grounding resistance and stray current density. Compared to traditional alternating current voltage gradient and 1/2 methods, the proposed method enhances detection efficiency, reduces equipment costs, and lowers the cost of individual troubleshooting. Research has confirmed that the dual-reference method effectively mitigates electromagnetic interference and signal crosstalk issues in the station by measuring the DC potential gradient of the anode ground bed (fault characteristic value: 0 V), offering an innovative solution for diagnosing ferrosilicon anode broken cable faults for cathodic protection in complex environments.

     

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