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Numerično vrednotenje kapljevinskih hladilnih sistemov statorja elektromotorja
ID Krašček, Martin (Author), ID Katrašnik, Tomaž (Mentor) More about this mentor... This link opens in a new window

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MD5: EF83F5A34A8DF44B892564061C5A8B94
PID: 20.500.12556/rul/4e04e9cb-1832-4279-94bf-67f85064e5ea

Abstract
V delu obravnavamo zasnovo in vrednotenje sistema vodnega hlajenja za elektromotor. Podane so teoretične osnove s področja prenosa topote, dinamike tekočin in računalniške dinamike tekočin. Opravljen je pregled obstoječih izvedb sistemov vodnega hlajenja elektromotorjev. Podrobneje sta analizirana dva prototipa, na podlagi katerih izvedemo idejno zasnovo sistema vodnega hlajenja. Izvedena je validacija vpliva gostote mreže ter vpliv turbulentnih modelov s stenskimi funkcijami za tok z nizkim Reynoldsovim številom. Ovrednoten je vpliv geometrijskih parametrov in vstopnih parametrov (temperatura, masni pretok). Z ustrezno izbiro vrednosti parametrov dosežemo manjše tlačne padce pri višjih masnih pretokih ter boljše oz. enakomernejše hlajenje sestavnih delov elektromotorja.

Language:Slovenian
Keywords:elektromotor, stator, hladilni sistem, vodno hlajenje, zasnova, vrednotenje, validacija, numerična analiza, CFD simulacija
Work type:Master's thesis/paper
Organization:FS - Faculty of Mechanical Engineering
Year:2017
PID:20.500.12556/RUL-92960 This link opens in a new window
Publication date in RUL:11.07.2017
Views:4444
Downloads:281
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Secondary language

Language:English
Title:Numerical evaluation of liquid cooling systems of an electric motor stator
Abstract:
This work deals with design and evaluation of water-cooling system for an electric motor. Theoretical background is given on subject of heat transfer, fluid mechanics and computational fluid dynamics. Review of existing water-cooling designs is performed. Detailed analysis is performed on two existing prototypes, which form the basis of design for our own water-cooling application. Mesh independance study is performed and effect of turbulent models with wall functions for low Reynolds number flows is validated. Furthermore, the effects of geometry and input parameters, such as temperature and mass flow, are evaluated. By choosing the most appropriate values of design parameters better performance is achieved, for instance, pressure drop is reduced at higher mass flow rates and thermal characteristic of the electric motor are improved.

Keywords:electric motor, stator, cooling system, water cooling, design, evaluation, validation, numerical analysis, CFD simulation

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