Browse > Article
http://dx.doi.org/10.5762/KAIS.2016.17.4.474

Electric Fan Heater Design for Eco-Energy Saving  

Sul, Yong-Tae (Division of Display Engineering, Hoseo University)
Publication Information
Journal of the Korea Academia-Industrial cooperation Society / v.17, no.4, 2016 , pp. 474-479 More about this Journal
Abstract
As the Eco-energy is recently required, electrical energy is fast increased. Several induction heating methods are attractive for Eco-energy and energy saving. In this paper, electrical fan heater was designed and developed with new concept for energy saving by electromagnetic induction heating. Proposed system was composed of three module, blast part, induction heating part and power transformation part. Induction heating method was adapted for heating and the resonant inverter was used for increasing of the power transformation efficiency. Full-bridge resonant inverter was adopted to resonant inverter. This system was composed of induction heating part made with metal(SUS 40 series), and power transformation part made with rectifier module, filter module and resonant inverter. From these results, the proposed new electric heater could be saved the energy from faster increasing the temperature compared to commercial gas and other electric heater. This electrical fan heater is possible to be used in field of home, commercial and agricultural area for eco-energy saving heater.
Keywords
Eco-Energy; Electrical Fan Heater; High Frequency; Induction-Heating; Resonant Inverter;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 S. M. Jang, S. H. Lee, H. C. Park, "Electromgnetic Induction Heating and Its Application", Proceedings of KIEE, vol.50, No.2, pp. 9, Feb, 2011.
2 Y. T. Sul, E. Y. Lee, H. M. Kwon, "Induction heating superheater by new heat exchange method", KAIS, vol.10, No.4, pp. 740-746, 2009.
3 H. S. Kim, "New Soft switching high frequency inverter for induction heating", Kyungnam University, Theses, pp. 1-10, 2008.
4 H. Kifune, Y. Hatanaka, M. Nakaoka, "Quasi-series-resonant-type-soft-switching phase shift modulated inverter", IEEE Proc. Electric Power Appl., vol.150, No.6, pp. 725-732, 2003. DOI: http://dx.doi.org/10.1049/ip-epa:20030558   DOI
5 Y. J. Kim, D. C. Shin, K. H. Kim, Y Uchihori, Y. Kawamura, "Fluid Heating System using High-Frequency Inverter Based on Electromagnetic Indirect Induction Heating", ICPE'01, pp. 69-74, Oct, 2001.
6 Jose M. Burdio, et al, "Asymmetrical voltage-cancellation control for full-bridge series resonant inverters", IEEE Trans. on Power Electronics, vol.19, No.2, pp. 461-469, 2004. DOI: http://dx.doi.org/10.1109/TPEL.2003.823250   DOI
7 W. S. Shin, H. C. Park, "Inverter for Induction Heating using Simultaneous Dual-Frequency Method", The Transactions of the Korean Institute of Power Electronics, vol.16, No.2, pp. 554-560, 2011. DOI: http://dx.doi.org/10.6113/TKPE.2011.16.6.554   DOI