References
- Akre, S., Fofana, I., Yéo, Z., Brettschneider, S., Kung, P., Sékongo, B., 2023. On the Feasibility of Monitoring Power Transformer’s Winding Vibration and Temperature along with Moisture in Oil Using Optical Sensors, Sensors, 23(4), p. 2310, DOI: 10.3390/s23042310
- Al Rifai, M. M., Sikora, K. S., Hadi, M. N. S., 2024. Magnetic alignment of micro steel fibers embedded in self – compacting concrete, Construction and Building Materials, 412, 134796, DOI: 10.1016/j.conbuildmat.2023.134796
- Cai, C., Wang, J., Wan, L., Wang, C., Yuan, Z., Zhang, J., Lin, H., Shao, J., 2024. Optical Fiber Composite Winding for In Situ Thermal Monitoring of Transmitter Magnetic Mechanism in Long – Track DWPT Systems, IEEE Transactions on Instrumentation and Measurement, 73, 1–4, DOI: 10.1109/TIM.2023.3329107
- Cao, Q., Han, X., Lai, Z., Xiong, Q., Zhang, X., Chen, Q., Xiao, H., Li, L., 2015. Analysis and reduction of coil temperature rise in electromagnetic forming, Journal of Materials Processing Technology 225, 185–194. DOI: 10.1016/j.jmatprotec.2015.02.006
- Carrera, K., Künzel, K., Konrád, P., Sovják, R., Papež, V., Mára, M., Fornůsek, J., Kheml, P., 2022. Concrete lintels reinforced with steel fibres oriented by a magnetic field. Acta Polytechnica, 62(5), 531 – 537. DOI: 10.14311/AP.2022.62.053
- Domski, J., Laskowska – Bury, J., Dudzińska, A., 2025. Cracking Behavior of Fiber – Reinforced Concrete Beams Made of Waste Sand, Applied Sciences, 15(9), 4790, DOI: 10.3390/app15094790
- Ferrández, D., Saiz, P., Morón, C., Dorado, M. G., Morón, A., 2019. Inductive method for the orientation of steel fibers in recycled mortars, Construction and Building Materials, 222, 243–253, DOI: 10.1016/j.conbuildmat.2019.06.113
- Gezegin, C., Ozgonenel, O., Dirik, H., 2021. A Monitoring Method for Average Winding and Hot – Spot Temperatures of Single – Phase, Oil – Immersed Transformers, IEEE Transactions on Power Delivery, 36(5), 3196–3203. DOI: 10.1109/TPWRD.2020.3035842
- Ghailan, D. B., Al – Ghalib, A. A., 2020. Magnetic alignment of steel fibres in self – compacting concrete, Australian Journal of Structural Engineering, 21(1), 333–341, DOI: 10.1080/13287982.2019.1643642
- Gies, S., Tekkaya, A.E., 2017. Analytical prediction of Joule heat losses in electromagnetic forming coils, Journal of Materials Processing Technology 246, 102–115. DOI: 0.1016/j.jmatprotec.2017.03.008
- Karunakaran, P., Osman, M.S., Karuppanna, V., Cheng, S.C., Lee, M.D., Fadhilah, M.D., Lau, A., 2020. Eddy Current versus Joule Heating Effects for a Cable Suspended in an Iron Pipe, in: 2020 IEEE International Conference for Innovation in Technology (INOCON). Presented at the 2020 IEEE International Conference for Innovation in Technology (INOCON), 1–6. DOI: 10.1109/INOCON50539.2020.9298438
- Kaźmierowski, M., Kadela, M., Kordasz, M., Chyliński, F., Jaskulski, R., Drzazga, M., Wydra, M., Marchwicki, K., Cińcio, A., 2025. Cementitious Composites Reinforced with Magnetically Oriented Steel Microfibers: Mechanical Properties, Deformability and Fracture Propagation, Materials, 20(18), 4739, DOI: 10.3390/ma18204739
- Konovalov, D., Tolstorebrov, I., Eikevik, T.M., Kobalava, H., Radchenko, M., Hafner, A., Radchenko, A., 2023. Recent Developments in Cooling Systems and Cooling Management for Electric Motors, Energies 16, 7006. DOI: 10.3390/en16197006
- Kunicki, M., Borucki, S., Zmarzły, D., Frymus, J., 2020. Data acquisition system for on – line temperature monitoring in power transformers, Measurement, 161, p. 107909, DOI: 10.1016/j.measurement.2020.107909
- Lin, C. – M., Liu, H. – Y., Tseng, K. – Y., Lin, S. – F., 2019. Heating, Ventilation, and Air Conditioning System Optimization Control Strategy Involving Fan Coil Unit Temperature Control, Applied Sciences 9, 2391. DOI: 10.3390/app9112391
- Michels, J., Gams, M., 2016. Preliminary study on the influence of fibre orientation in fibre reinforced mortars, Građevinar, 68(8), 645–655, DOI: 10.14256/JCE.1356.2016
- Mohammed, A., Djurović, S., 2017. FBG Thermal Sensing Features for Hot Spot Monitoring in Random Wound Electric Machine Coils, IEEE Sensors Journal, 17(10), 3058–3067, DOI: 10.1109/JSEN.2017.2691137
- Mu, R., Li, H., Qing, L., Lin, J., Zhao, Q., 2017. Aligning steel fibers in cement mortar using electromagnetic field, Construction and Building Materials, 131, 309–316, DOI: 10.1016/j.conbuildmat.2016.11.081
- Song, D., Liu, W., Yin, Z., Li, X., Wang, Q., Yan, X., Zhang, X., Wang, F., Qin, Y., Shen, Y., Zhang, Z., Zhao, Y., Cheng, T., 2023. A temperature sensor based on Er3+/Yb3+ co – doped tellurite fiber for real – time thermal monitoring of transformers, Ceramics International, 49(17, Part B), 28878–28885, DOI: 10.1016/j.ceramint.2023.06.156
- Šonka, Š., Petřík, M., 2023. Towards Hybrid Fibre Reinforced Concrete Exposed to Electromagnetic Field, AIP Conference Proceedings, 2780(1), Article 020020, in: Special Concrete and Composites 2021: 18th International Conference, Skalský Dvůr, Czech Republic, AIP Publishing LLC, Melville, NY, DOI: 10.1063/5.0137065.
- Szeląg, M., 2020. Application of an Automated Digital Image – Processing Method for Quantitative Assessment of Cracking Patterns in a Lime Cement Matrix, Sensors, 20(14), 3859, DOI: 10.3390/s20143859
- Villar, V.P., Medina, N.F., 2018. Alignment of hooked – end fibres in matrices with similar rheological behaviour to cementitious composites through homogeneous magnetic fields, Construction and Building Materials 163(2), 256 – 266, DOI: 10.1016/j.conbuildmat.2017.12.084
- Xue, W., Chen, J., Xie, F., Feng, B., 2018. Orientation of Steel Fibers in Magnetically Driven Concrete and Mortar, Materials 11(1) 170, DOI: 10.3390/ma11010170