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Автор Bernard, R.
Автор Glises, R.
Автор Chamagne, D.
Автор Cuchet, D.
Автор Kauffmann, J. M.
Дата выпуска 1999
dc.description The aim of this work concerns the development and the validation of a thermal steady state model applied to a permanent magnet direct current motor with commutator. The rated power of the machine is 120 W. Design has been realized thanks to the thermal modulus of the computation software with the finite element method Flux3D. It is shown in this work how it is possible to use only the heat equation to simulate the thermal behaviour of the motor. It implies calculating of new fluid conductivities (considering also all thermal modes) by comparison of calculated and experimental temperatures. To realize these 3D modelizations, it is necessary to know and to locate all the losses of the motor which are considered as thermal sources. The experimental temperatures are given by 40 chromel-alumel thermocouples of 100 μm diameter located in the rotor and the stator of the machine. Numerical computations use Dirichlet boundary layer conditions given by an IR camera.
Формат application.pdf
Издатель EDP Sciences
Копирайт © EDP Sciences, 1999
Название Modelling of the steady state thermal behaviour of a permanent magnet direct current motor with commutator. 3D finite elements study
Тип research-article
DOI 10.1051/epjap:1999207
Electronic ISSN 1286-0050
Print ISSN 1286-0042
Журнал The European Physical Journal Applied Physics
Том 7
Первая страница 127
Последняя страница 136
Аффилиация Bernard R.; ECIA Laboratoire Électricité-Électronique, B.P. 79, 25402 Audincourt Cedex, France
Аффилиация Glises R.; Université de Franche-Comté, Institut de Génie Énergétique, Parc technologique, 2 avenue Jean Moulin, 90000 Belfort, France
Аффилиация Chamagne D.; Université de Franche-Comté, Institut de Génie Énergétique, Parc technologique, 2 avenue Jean Moulin, 90000 Belfort, France
Аффилиация Cuchet D.; ECIA Laboratoire Électricité-Électronique, B.P. 79, 25402 Audincourt Cedex, France
Аффилиация Kauffmann J. M.; Université de Franche-Comté, Institut de Génie Énergétique, Parc technologique, 2 avenue Jean Moulin, 90000 Belfort, France
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