DocumentCode :
741763
Title :
Piezoelectric Fan Cooling: A Novel High Reliability Electric Machine Thermal Management Solution
Author :
Gilson, G.M. ; Pickering, S.J. ; Hann, D.B. ; Gerada, C.
Author_Institution :
Div. of Energy & Sustainability, Univ. of Nottingham, Nottingham, UK
Volume :
60
Issue :
11
fYear :
2013
Firstpage :
4841
Lastpage :
4851
Abstract :
Electric machine thermal management is critical for the correct operation of high power density electrical machines. This is, however, challenging to achieve in safety-critical applications where the reliability of the cooling system needs to be significantly higher than conventional solutions. Piezoelectric fans are presented here as a novel fault-tolerant forced cooling convective system for electric machines. Particle image velocimetry techniques in conjunction with infrared thermal measurements were implemented to map and quantify the flow fields generated by such a cooling arrangement as well as to determine the effective cooling enhancement. This paper also outlines the main design variables for such a system and highlights the main considerations to be accounted for to optimize the cooling potential. For the specific machine presented in this paper, the optimal fin/fan geometry resulted in mean flows in excess of 2.41 m/s and turbulence values in excess of 2.38 m/s, which resulted in an average convective heat transfer coefficient enhancement of 364.8% on the fin base and a further enhancement of 53.6% on each of the fin side walls. This, in turn, led to a 61.8% reduction in the electric machine heat sink cooling mass.
Keywords :
cooling; fault tolerance; thermal management (packaging); velocimeters; fault-tolerant forced cooling convective system; high power density electrical machines; high reliability electric machine thermal management solution; infrared thermal measurements; particle image velocimetry techniques; piezoelectric fan cooling; safety-critical applications; Fans; Fluid flow measurement; Heat sinks; Heat transfer; Resistance heating; Thermal management; Fault-tolerant machines; fluid flow visualization/measurement; heat transfer enhancement; machine cooling; piezoelectric fans; thermal management;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2012.2224081
Filename :
6329428
Link To Document :
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