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Influence of environmental conditions on EMF levels in a span of overhead transmission lines

Research output: Contribution to journalArticleScientificpeer-review

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Influence of environmental conditions on EMF levels in a span of overhead transmission lines. / Okun, Oleksandr; Kravchenko, Yurii; Korpinen, Leena.

In: Progress in Electromagnetics Research C, Vol. 63, 2016, p. 163-171.

Research output: Contribution to journalArticleScientificpeer-review

Harvard

Okun, O, Kravchenko, Y & Korpinen, L 2016, 'Influence of environmental conditions on EMF levels in a span of overhead transmission lines', Progress in Electromagnetics Research C, vol. 63, pp. 163-171. https://doi.org/10.2528/PIERC16021106

APA

Okun, O., Kravchenko, Y., & Korpinen, L. (2016). Influence of environmental conditions on EMF levels in a span of overhead transmission lines. Progress in Electromagnetics Research C, 63, 163-171. https://doi.org/10.2528/PIERC16021106

Vancouver

Okun O, Kravchenko Y, Korpinen L. Influence of environmental conditions on EMF levels in a span of overhead transmission lines. Progress in Electromagnetics Research C. 2016;63:163-171. https://doi.org/10.2528/PIERC16021106

Author

Okun, Oleksandr ; Kravchenko, Yurii ; Korpinen, Leena. / Influence of environmental conditions on EMF levels in a span of overhead transmission lines. In: Progress in Electromagnetics Research C. 2016 ; Vol. 63. pp. 163-171.

Bibtex - Download

@article{5da472e6b0ca43dda29f4ea51c0eaf47,
title = "Influence of environmental conditions on EMF levels in a span of overhead transmission lines",
abstract = "The paper is devoted to the investigation of electromagnetic field distribution in the vicinity of overhead transmission lines under different environmental conditions, taking into account the wire sag curve in a span. A wire state equation is utilized, which allows one to calculate stresses in the wire and sags based on the known stresses and temperatures in the initial state. The results of the electric and magnetic field distribution on sample 330 kV and 110 kV transmission lines are presented. We show that the highest electromagnetic field levels are associated with the most severe environmental conditions, resulting in the highest sag.",
author = "Oleksandr Okun and Yurii Kravchenko and Leena Korpinen",
year = "2016",
doi = "10.2528/PIERC16021106",
language = "English",
volume = "63",
pages = "163--171",
journal = "Progress in Electromagnetics Research C",
issn = "1937-8718",
publisher = "EMW Publishing",

}

RIS (suitable for import to EndNote) - Download

TY - JOUR

T1 - Influence of environmental conditions on EMF levels in a span of overhead transmission lines

AU - Okun, Oleksandr

AU - Kravchenko, Yurii

AU - Korpinen, Leena

PY - 2016

Y1 - 2016

N2 - The paper is devoted to the investigation of electromagnetic field distribution in the vicinity of overhead transmission lines under different environmental conditions, taking into account the wire sag curve in a span. A wire state equation is utilized, which allows one to calculate stresses in the wire and sags based on the known stresses and temperatures in the initial state. The results of the electric and magnetic field distribution on sample 330 kV and 110 kV transmission lines are presented. We show that the highest electromagnetic field levels are associated with the most severe environmental conditions, resulting in the highest sag.

AB - The paper is devoted to the investigation of electromagnetic field distribution in the vicinity of overhead transmission lines under different environmental conditions, taking into account the wire sag curve in a span. A wire state equation is utilized, which allows one to calculate stresses in the wire and sags based on the known stresses and temperatures in the initial state. The results of the electric and magnetic field distribution on sample 330 kV and 110 kV transmission lines are presented. We show that the highest electromagnetic field levels are associated with the most severe environmental conditions, resulting in the highest sag.

U2 - 10.2528/PIERC16021106

DO - 10.2528/PIERC16021106

M3 - Article

VL - 63

SP - 163

EP - 171

JO - Progress in Electromagnetics Research C

JF - Progress in Electromagnetics Research C

SN - 1937-8718

ER -