In high power density applications, such as electric or hybrid electric vehicles, heat extraction is a crucial aspect of electrical machine design due to stringent volume specifications. In these cases, it is extremely difficult, if at all possible, to satisfy the maximum temperature requirement when using conventional cooling systems, such as housing fins, shaft-mounted fans or even water jackets. To this end, a novel direct oil cooling system conceived for Torus-type axial-flux permanent-magnet machines is proposed here. In order to demonstrate its effectiveness, lumped thermal equivalent circuit simulations, finite element analyses and experimental tests are presented. The expected performances of the machine using the proposed direct oil cooling are compared to those obtained using state of the art water cooling.

Direct oil cooling of end-windings in torus-type axial-flux permanent-magnet machines / Marcolini, F.; De Donato, G.; Giulii Capponi, F.; Caricchi, F.. - In: IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS. - ISSN 0093-9994. - 57:3(2021), pp. 2378-2386. [10.1109/TIA.2021.3059811]

Direct oil cooling of end-windings in torus-type axial-flux permanent-magnet machines

Marcolini F.;De Donato G.
;
Giulii Capponi F.;Caricchi F.
2021

Abstract

In high power density applications, such as electric or hybrid electric vehicles, heat extraction is a crucial aspect of electrical machine design due to stringent volume specifications. In these cases, it is extremely difficult, if at all possible, to satisfy the maximum temperature requirement when using conventional cooling systems, such as housing fins, shaft-mounted fans or even water jackets. To this end, a novel direct oil cooling system conceived for Torus-type axial-flux permanent-magnet machines is proposed here. In order to demonstrate its effectiveness, lumped thermal equivalent circuit simulations, finite element analyses and experimental tests are presented. The expected performances of the machine using the proposed direct oil cooling are compared to those obtained using state of the art water cooling.
2021
axial flux; electric vehicle; electrical machines; finite-element analysis; hybrid electric vehicle; oil cooling; permanent magnet; thermal analysis; thermal modelling; traction motors
01 Pubblicazione su rivista::01a Articolo in rivista
Direct oil cooling of end-windings in torus-type axial-flux permanent-magnet machines / Marcolini, F.; De Donato, G.; Giulii Capponi, F.; Caricchi, F.. - In: IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS. - ISSN 0093-9994. - 57:3(2021), pp. 2378-2386. [10.1109/TIA.2021.3059811]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1577181
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