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Article

The Effect of Conductor Sag on EMF Exposure Assessment for 400 kV Double-Bundle

1
Faculty of Energy Engineering, University for Business and Technology, 10000 Prishtina, Kosovo
2
Faculty of Veterinary and Agriculture, University of Prishtina, 10000 Prishtina, Kosovo
3
Faculty of Radiology, AAB College, 10000 Pristina, Kosovo
4
Department of Power Engineering, University of Prishtina, 10000 Pristina, Kosovo
5
Faculty of Mechanical and Computer Engineering, University of Mitrovica “Isa Boletini”, 40000 Mitrovica, Kosovo
*
Author to whom correspondence should be addressed.
Appl. Sci. 2025, 15(17), 9789; https://doi.org/10.3390/app15179789
Submission received: 18 August 2025 / Revised: 2 September 2025 / Accepted: 4 September 2025 / Published: 6 September 2025
(This article belongs to the Section Applied Physics General)

Abstract

This study investigates the effect of seasonal conductor sag on electromagnetic field (EMF) exposure to near 400 kV double-bundle overhead transmission lines. The conductor sag study resulted in clearance values of 28.0 m for winter (−10 °C, sag ≈ 7.0 m) and 23.4 m for summer (+35 °C, sag ≈ 11.65 m). For both seasonal examples, the electric field strength and magnetic flux density were calculated at a pedestrian height of 1.5 m, and the image approach to account for ground effects. The winter setup resulted in maximum values of 1.35 kV/m (E) and 27.2 µT (B), while the summer configuration produced higher values of 1.96 kV/m and 38.5 µT, respectively. Autumn field measurements, representing intermediate seasonal circumstances, produced average values of 1.294 kV/m and 1.399 µT, with peaks of 8.39 kV/m and 6.85 µT for electric field and magnetic flux density, respectively. The electric field projections were nearly identical to measurements; however, the magnetic field predictions were significantly higher, most likely due to the model’s assumptions of balanced currents and ideal geometry. These findings suggest that seasonal conductor sag variation is a real and substantial factor in assessing EMF exposure, with the electric field being particularly sensitive to clearance changes. The findings emphasize the need to incorporate a large analysis into EMF compliance assessments, especially in cases where terrain relief between towers may further diminish clearance in mid-span regions.
Keywords: fields; electric; magnetic; ambient temperature; calculation; conductor sag; transmission line fields; electric; magnetic; ambient temperature; calculation; conductor sag; transmission line

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MDPI and ACS Style

Guri, K.; Hodolli, G.; Kadiri, S.; Gjukaj, A.; Kastrati, L. The Effect of Conductor Sag on EMF Exposure Assessment for 400 kV Double-Bundle. Appl. Sci. 2025, 15, 9789. https://doi.org/10.3390/app15179789

AMA Style

Guri K, Hodolli G, Kadiri S, Gjukaj A, Kastrati L. The Effect of Conductor Sag on EMF Exposure Assessment for 400 kV Double-Bundle. Applied Sciences. 2025; 15(17):9789. https://doi.org/10.3390/app15179789

Chicago/Turabian Style

Guri, Kjani, Gezim Hodolli, Sehad Kadiri, Arben Gjukaj, and Labinot Kastrati. 2025. "The Effect of Conductor Sag on EMF Exposure Assessment for 400 kV Double-Bundle" Applied Sciences 15, no. 17: 9789. https://doi.org/10.3390/app15179789

APA Style

Guri, K., Hodolli, G., Kadiri, S., Gjukaj, A., & Kastrati, L. (2025). The Effect of Conductor Sag on EMF Exposure Assessment for 400 kV Double-Bundle. Applied Sciences, 15(17), 9789. https://doi.org/10.3390/app15179789

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