METHODS FOR MITIGATION OF MAGNETIC FIELD GENERATED BY UNDERGROUND POWER CABLES IN POLYETHYLENE PIPES MADE OF COMPOSITE MAGNETIC MATERIAL

Author:

Kucheriava I.M.,

Abstract

The magnetic field of a high-voltage (330 kV) underground single-circuit power cable line, laid in a polyethylene pipe having magnetic properties, with the use of special loose-fill/fill-up soil of different dimensions (bulk) is studied by computer modeling. The pipe and additional soil around and near the cables are made of a composite material with effective magnetic properties and can act as a magnetic shield that reduces the level of the field on the ground. The efficiency of field shielding depending on the height and width of the composite loose-fill/fill-up soil is analyzed. The existence of the optimal not large (in height) fill-up soil for the best mitigation of the magnetic field on the ground directly above the cables, and the influence of the width of the loose-fill/fill-up soils on the shielding efficiency are revealed. The characteristic features of the magnetic field distribution within the considered shielding elements of the cable line depending on the availability or non-availability of composite loose-fill soil and the height of the fill-up soil with effective magnetic properties are presented. The shielding efficiency of underground single-circuit three-phase power cable lines when using the magnetic fill-up soil with a certain small height (volume) is grounded. References 11, figures 4.

Publisher

National Academy of Sciences of Ukraine (Co. LTD Ukrinformnauka) (Publications)

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology

Reference11 articles.

1. Makarov E.F. Handbook on 0,4-35 kV and 110-1150 kV power networks. Vol. 3. Moskva: Papirus-Pro, 2004. 688 p. (Rus)

2. Dmitriev M.V. Cable lines laid in polyethylene pipes. Thermal calculation. Novosti elektrotechniki. 2013. No 4 (82). Pp. 11-17. (Rus)

3. Dmitriev M.V. Requirements to pipes for laying of power cable lines. Kabel-news. 2014. No 6. Pp. 22-26. (Rus)

4. Boukrouche F., Moreau C., Pelle J., Beaubert F., Harmand S., Moreau O. Mock-up study of the effect of wall distance on the thermal rating of power cables in ventilated tunnels. IEEE Trans. on Power Delivery. 2017. Vol. 32. No 6. Pp. 2453-2461. DOI: https://doi.org/10.1109/TPWRD.2016.2629285

5. Shcherba A.A., Podoltsev O.D., Kucheriava I.M. The study of magnetic field of power cables in polyethyl-ene pipes with magnetic properties. Tekhnichna Elektrodynamika. 2020. No 3. Pp. 15-21. DOI: https://doi.org/10.15407/techned2020.03.015 (Ukr)

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