Impact of Typical Structural Parameters on Hotspot Temperature Rise in Dry-Type Bridge-Arm Reactors: A Simulation Study

Author:

Yin Li,Yang Wei,Wang Kun,Wang Jie,Zhang Chong,Chen Yun,Qiao Jian,Wang Guangke

Publisher

Springer Nature Singapore

Reference12 articles.

1. Ye ZG (1999) Temperature rise test of dry-type air-core reactor and calculation of its winding temperature rise. Transformer 36(9):7–11 (into Chinese)

2. An L, Wang Z, Tang G (2002) 3D-temperature field prediction by FEM and temperature-rise test for dry-type reactor. Journal of North China Electric Power University 29(3):75–78 (into Chinese)

3. Zhang M, Wang H, Sun G et al (2021) AC and DC temperature rise characteristics of large capacity dry-type air core reactors based on isothermal isobaric design method. Southern Power System Technology 13(12):74–78 (into Chinese)

4. Smolka J, Nowak AJ (2011) Shape optimization of coils and cooling ducts in dry-type transformers using computational fluid dynamics and genetic algorithm. IEEE Trans Magn 47(6):1726–1731

5. Yuan Z, He J, Pan Y et al (2015) Research on electromagnetic efficiency optimization in the design of air-core coils. International Transactions on Electrical Energy Systems 25(5):789–798

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