OVERVOLTAGE DURING ARC SINGLE-PHASE EARTH FAILURES IN 35 KV ELECTRICAL NETWORKS
Article_5 PDF (Українська)

Keywords

overvoltage
single-phase cuit
electrical network
computer simulation

How to Cite

Seheda, M.S., et al. “OVERVOLTAGE DURING ARC SINGLE-PHASE EARTH FAILURES IN 35 KV ELECTRICAL NETWORKS”. Proceedings of the Institute of Electrodynamics of the National Academy of Sciences of Ukraine, no. 60, Dec. 2021, p. 038, doi:10.15407/publishing2021.60.038.

Abstract

The results of the study of overvoltages during arc single-phase earth faults of intermittent nature in the 35 kV electric network with isolated neutral are presented. Computer simulations of transients in the electrical network have obtained the maximum multiplicities of overvoltages at the point of occurrence of single-phase arc earth faults, which exceed theoretically expected according to known theories of the occurrence and development of overvoltages. The change of the overvoltage level on the 35 kV busbars of the network substations, electrically connected to the place of occurrence of the single-phase earth fault, and the influence of the cable line on the overvoltage multiplicity are shown.  Ref. 12, fig. 3, table.

https://doi.org/10.15407/publishing2021.60.038
Article_5 PDF (Українська)

References

Rules of arrangement of electrical installations. The publication is official. Ministry of Energy and Coal Industry of Ukraine. Kharkiv: Fort Publishing House, 2017. 760 p. (Ukr)

Belyakov N.N. Investigation of overvoltage at arc earth faults in 6 and 10 kV networks with isolated neu-tral. Elektrichestvo. 1957. No 5. Pp. 31–36. (Rus)

Likhachev F.A. Earth faults in networks with isolated neutral and capacitive current compensation. Mos-cow: Energiya, 1971. 152 p. (Rus)

Sabarno L.R., Koshman V.I., Sevastyuk I.M. Investigation of arc overvoltages in the case of single- and two-phase earth faults in a distribution network with isolated neutral. Energy and computer-integrated technologies in agriculture. 2017. No 1 (6). Pp. 17–21. (Ukr)

Varetsky Y., Bakhor Z., Ravlyk O. Transients in 10-35 kV electric networks with ungrounded neutrals un-der earth faults. Proc. of VII Int. Symp. Short Circuit Currents in Power Systems, Warsaw, 1996. Pp. 1.20.1-1.20.4.

Krotenok V.V. Calculation of overvoltage in the distribution network with intermittent arc earth faults with different modes of neutral groundingURL: https://cyberleninka.ru/article/n/raschet-perenapryazheniy-v-raspredelitelnoy-seti-pri-preryvistyh-dugovyh-zamykaniyah-na-zemlyu-s-razlichnymi-rezhimami-zazemleniya/viewer. (accessed: 10.08.2021). (Rus)

Shuin V. Calculation of overvoltage at arc intermittent earth faults. URL: http://www.news.elteh.ru/arh/2009/58/09.php (accessed: 10.08.2021). (Rus)

Seheda M.S., Bakhor Z.M., Ravlyk N.O., Bakalo G.SH. Internal overvoltages in 6...10 kV electrical net-works and overvoltage protection. Pratsi Instytutu elektrodynamiky Natsionalnoi Akademii Nauk Ukrainy. 2006. No 1(13). Pp. 23–30. (Ukr)

Ravlyk N.O., Ravlyk O.M., Seheda M.S. Overvoltages in electric networks of own needs of power plants during the commutations of vacuum switches, and their limitations. Tekhnichna elektrodynamika. 2019. No 1. Pp. 63–67. DOI: https://doi.org/10.15407/techned2019.01.063 (Ukr)

Seheda M.S., Ravlyk N.O. Limitation of internal overvoltages in electric networks of own needs of power plants during single-phase earth faults. Naukovyy visnyk Natsionalnoho hirnychoho universytetu. 2014. No 6. Pp. 116–119. (Ukr)

Varetsky Yu.O., Ravlyk O.M., Bakhor Z.M. Features of modeling of processes at short circuits to the earth in networks with the isolated neutral. Tekhnichna elektrodynamika. 1994. No 2. Pp. 61–63. (Ukr)

O. Ravlyk, N. Ravlyk. Digital Complex for Modeling Processes in Electric Circuits with Protection and Au-tomatic Devices. Energy Engineering and Control Systems. 2017. Vol. 3. No 1. Pp. 23–28. DOI: https://doi.org/10.23939/jeecs2017.01.023

Creative Commons License

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.

Copyright (c) 2021 M.S. Seheda, O.M. Ravlyk, Z.M. Bakhor, A.Ya. Yatseyko

Downloads

Download data is not yet available.