Combined effects of electrostatic and electromagnetic interferences of high voltage overhead power lines on aerial metallic pipeline

Author:

Rabah Djekidel1,Lahdeb Mohamed1,Ghoneim Sherif2,Mahi Djillali1

Affiliation:

1. Laboratory for Analysis and Control of Energy Systems and Electrical Systems LACoSERE, Laghouat University, Algeria

2. Electrical Engineering Department, College of Engineering, Taif University, Taif, Saudi Arabia

Abstract

The main purpose of this paper is to model and analyze the electrostatic and electromagnetic interferences between a HV overhead power line and an aerial metallic pipeline situated parallel at a close distance. The modelling of these interferences is typically done for safety reasons, to ensure that the induced voltage does not pose any risk to the operating and maintenance personnel and to the integrity of the pipeline. The adopted methodologies respectively for electrostatic and electromagnetic interferences are based on the charge and current simulation methods combined with the Teaching learning based optimization (TLBO) algorithm. The Friedman test analysis indicate that teaching learning based optimization (TLBO) algorithm can be used for parameters optimization, it showed better results. In the case where the induced currents and voltages values exceed the limit authorized values by the international CIGRE standard, mitigation measures become necessary. The simulation results obtained were compared with those provided respectively by the admittance matrix analysis and Carson's method, good agreement was obtained.

Publisher

National Library of Serbia

Subject

General Materials Science

Reference90 articles.

1. CIGRE, Guide on the Influence of High Voltage AC Power Systems on Metallic Pipelines, Working Group 36.02, Technical Brochure No. 095, 1995.

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

3. EN 50443, effects of electromagnetic interference on pipelines cased by high voltage A.C. railway systems and/or high voltage A.C. power supply systems, CENELEC Report No: ICS 33.040.20; 33.100.01, 2009.

4. Australian New Zealand Standard, Electrical Hazards on Metallic Pipelines, Standards Australia, Standards New Zealand, 4853:2000.

5. D. D. Micu, E. Simion, D. Micu and A. Ceclan, "Numerical methods for induced voltage evaluation in electromagnetic interference problems", In Proceedings of the 9th International Conference on Electrical Power Quality and Utilisation, 2007, pp. 1-6.

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