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Analysis of a Permanent Magnet Eddy Current Heater Driven by a Wind TurbineTUDORACHE, T. , MELCESCU, L. , PREDESCU, M. |
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Author keywords
eddy currents, design optimization, finite element methods, system analysis, wind energy
References keywords
energy(17), wind(13), buildings(6), system(5), heater(5), current(5), zero(4), power(4), permanent(4), fireteanu(4)
Blue keywords are present in both the references section and the paper title.
About this article
Date of Publication: 2015-08-31
Volume 15, Issue 3, Year 2015, On page(s): 53 - 58
ISSN: 1582-7445, e-ISSN: 1844-7600
Digital Object Identifier: 10.4316/AECE.2015.03007
Web of Science Accession Number: 000360171500007
SCOPUS ID: 84940770190
Abstract
This paper deals with the numerical analysis and optimal design of a Permanent Magnet Eddy Current Heater (PMECH) driven by a wind turbine. This study includes a preliminary sizing of the wind turbine, an optimal design of the PMECH from cost reduction point of view, a heat transfer analysis of the device and a study of the dynamic response of the wind system. The electromagnetic and heat transfer analysis is based on Finite Element Method (FEM) implemented in the Flux software package and the dynamic response of the wind system is analyzed using a dedicated model developed under Matlab/Simulink environment. |
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[1] Direct heat energy harvesting from wind by a permanent magnet eddy currents heater with different magnet arrangements, Khanjari, Ali, Kang, Sangkyun, Lee, Sang‐Il, Lee, Jang‐Ho, Kim, Yong‐Su, Energy Science & Engineering, ISSN 2050-0505, Issue 2, Volume 11, 2023.
Digital Object Identifier: 10.1002/ese3.1324 [CrossRef]
[2] Performance Prediction for Small Horizontal Axis Wind Turbine (HAWT) by Integrated Theory and Experimental Verifications, Chen, Yu-Jen, Huang, Guo-Yuan, Shiah, Y. C., Tsai, Yi-Lun, International Journal of Precision Engineering and Manufacturing-Green Technology, ISSN 2288-6206, Issue 1, Volume 7, 2020.
Digital Object Identifier: 10.1007/s40684-019-00141-1 [CrossRef]
[3] Thermal Power Calculation of Interior Permanent Magnet Eddy Current Heater Using Analytical Method, Lu, Honglei, Zhang, Ling, Hong, Wenpeng, Processes, ISSN 2227-9717, Issue 7, Volume 12, 2024.
Digital Object Identifier: 10.3390/pr12071457 [CrossRef]
[4] Studying Four Different Permanent Magnet Eddy Currents Heaters with Different Magnet Areas and Numbers to Produce Heat Directly from a Vertical Axis Wind Turbine, Khanjari, Ali, Kang, Sangkyun, Lee, Daeyong, Jung, Dae-Yi, Lee, Jang-Ho, Energies, ISSN 1996-1073, Issue 1, Volume 15, 2021.
Digital Object Identifier: 10.3390/en15010275 [CrossRef]
[5] Analysis of the Eddy current of water heating device to convert wind energy directly into heat: Case study maldo island, South Korea, Hadadi, Sina, Kang, Sangkyun, Park, Gwangseok, Lee, Jang-Ho, Applied Energy, ISSN 0306-2619, Issue , 2024.
Digital Object Identifier: 10.1016/j.apenergy.2024.124192 [CrossRef]
[6] Research on the Mechanism of Thermal Power Enhancement in an Interior Permanent Magnet Eddy Current Heater Driven by Wind, Lu, Honglei, Zhou, Ce, Hong, Wenpeng, Ding, Haoshu, Processes, ISSN 2227-9717, Issue 11, Volume 12, 2024.
Digital Object Identifier: 10.3390/pr12112390 [CrossRef]
[7] Model of Induction Heater on Permanent Magnets Using Wind Energy, Grigorash, Oleg, Kirichenko, Anna, Pigarev, Kirill, 2019 International Conference on Industrial Engineering, Applications and Manufacturing (ICIEAM), ISBN 978-1-5386-8119-0, 2019.
Digital Object Identifier: 10.1109/ICIEAM.2019.8743026 [CrossRef]
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Faculty of Electrical Engineering and Computer Science
Stefan cel Mare University of Suceava, Romania
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