Ac corrosion phenomenon and mitigation in buried pipeline due to very-high-voltage (VHV) overhead transmission line effect

Author:

Gherbia Abdelali1,Djekidel Rabah1,Sid-Ahmed Bessedik1,Djillali Mahi1

Affiliation:

1. Faculty of Technology, Laboratory of LACoSERE, Laghouat University, Algeria

Abstract

The presence of a very-high-voltage (VHV) electricity transmission line nearby a metallic pipeline can be a source of dangerous effects for this pipeline due to the electromagnetic field generated by this power line, it can induce a considerable voltage which may threaten the safety of operating personnel and the integrity of the pipeline. The main purpose of this paper is to evaluate the electromagnetic coupling effect in a buried metallic pipeline located in close proximity to a very-high-voltage (VHV) overhead transmission line using the Faraday's law and nodal network analysis under steady state conditions, as well as to estimate the possibility of AC induced corrosion of the metallic pipeline. The obtained results show that the induced voltage on the metallic pipeline exceeds the maximum threshold value recommended by the international regulations CENELEC and NACE, the AC corrosion current density surpasses the allowable value indicated by the specialized majority of corrosion studies. Therefore, a mitigation technique based on a pipeline grounding system is proposed to reduce the voltage induced on the pipeline to safe limits, in order to remedy the hazardous potential effects. The adopted mitigation technique has achieved better efficiency by reducing the induced voltage well below the safety limit.

Publisher

National Library of Serbia

Reference80 articles.

1. CAN/CSA Standard, "Principles and Practices of Electrical Coordination between Pipelines and Electric Supply Lines", Canadian Standards Association, C22-3, no. 6, 2013.

2. R. A. Gummow, "A/C Interference Guideline Final Report", NACE Corrosion Specialist, Canadian Energy Pipeline Association, no.17, 2014.

3. K. A. Ellithy and A. H. AL-Badi, "Determining the electromagnetic interference effects on pipelines built in power transmission lines right-of-way", In Proceedings of the International Conference on Electrical Engineering, Jeju Island, Korea, July 2002, pp. 1459-1464.

4. R. W. Bonds, "The Effect of Overhead AC Power Lines Paralleling Ductile Iron Pipelines", Ductile Iron Pipe, Research Association (DIPRA), Birmingham, pp. 1-8, 2017.

5. J. R. Daconti, "Electrical risks in transmission line, pipeline shared rights of way", Power Technology, Newsletter Issue 96, October 2004.

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