DocumentCode
61654
Title
Temperature Calculation for Tubular Linear Motor by the Combination of Thermal Circuit and Temperature Field Method Considering the Linear Motion of Air Gap
Author
Xuzhen Huang ; Liyi Li ; Bo Zhou ; Chengming Zhang ; Zhuoran Zhang
Author_Institution
Jiangsu Key Lab. of New Energy Generation & Power Conversion, Nanjing Univ. of Aeronaut. & Astronaut., Nanjing, China
Volume
61
Issue
8
fYear
2014
fDate
Aug. 2014
Firstpage
3923
Lastpage
3931
Abstract
The air gap of tubular linear motors moves linearly, causing heat transfer states of the motor to alternate repeatedly. Thus, the heat transfer coefficients of the mover inner surface and the stator outer surface vary constantly. In this paper, the combination model of the thermal circuit and temperature field is established to calculate the transient temperature rise of a tubular linear motor with short and movable primary. The equivalent thermal circuit model of the moving air gap and the temperature field models of the primary (also named as mover) and secondary (also named as stator) are established. The thermal boundary conditions and the correlations among them are analyzed. By this method, the complicated variation and distribution of the heat transfer coefficients are gained. Moreover, the transient temperature rise of the motor is calculated. This method takes advantage of the flexibility of the thermal circuit method and the accuracy of the temperature field method. The calculated and tested results of the prototype are compared and analyzed.
Keywords
air gaps; equivalent circuits; heat transfer; linear motors; machine insulation; stators; correlation analysis; equivalent thermal circuit model; heat transfer coefficient; linear air gap motion; mover inner surface; stator outer surface; thermal boundary condition; transient temperature calculation; tubular linear motor; Air gaps; Atmospheric modeling; Heat transfer; Heating; Integrated circuit modeling; Permanent magnet motors; Stators; Heat transfer coefficient; linear motor; temperature field; temperature rise; thermal circuit;
fLanguage
English
Journal_Title
Industrial Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0278-0046
Type
jour
DOI
10.1109/TIE.2013.2286576
Filename
6644276
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