Heat transfer analysis of three phase transformer considering unpredictable load demand changes

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A.N. Afandi, Aripriharta, Yuni Rahmawati, Marji, Tri Kuncoro, Eddy Sutadji, Yunis Sulistyorini, Slamet Hani, Farrel C.w.a., Michiko R.s.a., A. Hermawan, T. Winarno, N. Tutkun

2020 AIP Conference Proceedings Vol. 2255 Conference paper Cited by 0 Quartile

Abstract

In general, one of the main components used in electric power systems is a transformer. In principles, this equipment uses a magnetic process through the pairing winding where a cooling system is also applied to maintain the expected operational performance and to maintain heat transfer during the power delivery. In fact, load demand changes fluctuate depending on the behavior of energy users. This research is conducted to evaluate heat transfer in a three-phase transformer. This work also takes into the flowing current gradually based on the heat generated in the transformer. To cover these objectives, the analysis is directed to the power transformer optimization using the Artificial Salmon Tracking Algorithm (ASTA) for performing heat flow rates on-demand changes. The results obtained indicate that ASTA has a potential implementation for determining the optimal heat transfer. The demand changes have affected the power loss detected in both windings which are migrated out of heat through the cooling and fluid systems. © 2020 Author(s).

Affiliations

Electrical Engineering, Universitas Negeri Malang, Malang, Indonesia; Smart Power and Advanced Energy Systems (SPAES) Research Center, Batu, Indonesia; Center of Advanced Materials for Renewable Energy (CAMRY), Universitas Negeri Malang, Malang, Indonesia; Engineering Faculty Member, Universitas Negeri Malang, Malang, Indonesia; Department of Math, Ikip Budi Utomo, Malang, Indonesia; Electrical Engineering, Akprind, Yogyakarta, Indonesia; Electrical Engineering, State Polytechnic of Malang, Malang, Jawa Timur, Indonesia; Electrical Engineering, Istanbul Aydin University, Istanbul, Turkey