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Erschienen in: Electrical Engineering 1/2021

23.07.2020 | Original Paper

Electrical–thermal modeling of a double-canned induction motor for electrical performance analysis and motor lifetime determination

verfasst von: Amadou Tinni, Dominique Knittel, Mohammed Nouari, Guy Sturtzer

Erschienen in: Electrical Engineering | Ausgabe 1/2021

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Abstract

In nuclear and chemical fields, canned motor pumps are one of the safest ways to pump dangerous fluids. The canned motor pump is a compact unit integrating a hydraulic part and an induction motor with a common shaft. The particularity of the motor is that two non-magnetic cans are inserted in the air gap for leak tightness reasons. This study is therefore motivated by the fact that on one side classical electromagnetic and thermal models are not applicable for the canned motor, and on the other side new European standards about electrical machines require the design of motors with higher efficiency. In this work, an analytical model that combines electrical and thermal approaches has been performed to determine both electrical performances of the canned motor and the stator lifetime through the prediction of the maximum temperature of the winding for different operating conditions.

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Literatur
1.
Zurück zum Zitat Bin H (2011) Research on mechanical analyses of the cans based on 1000 nuclear power plant. In: International conference on electrical and control engineering, pp. 6093–6096 Bin H (2011) Research on mechanical analyses of the cans based on 1000 nuclear power plant. In: International conference on electrical and control engineering, pp. 6093–6096
2.
Zurück zum Zitat Yang R, Zhou L, Wang J, Xiao Y, Ling Z (2017) Performance calculation for a canned solid- rotor induction motor with squirrel-cage. In: International conference on electrical machines and systems Yang R, Zhou L, Wang J, Xiao Y, Ling Z (2017) Performance calculation for a canned solid- rotor induction motor with squirrel-cage. In: International conference on electrical machines and systems
3.
Zurück zum Zitat Ergene LT, Salon SJ (2005) Determining the equivalent circuit parameters of canned solid-rotor induction motors. IEEE Trans Magn 41(7):2281–2286CrossRef Ergene LT, Salon SJ (2005) Determining the equivalent circuit parameters of canned solid-rotor induction motors. IEEE Trans Magn 41(7):2281–2286CrossRef
4.
Zurück zum Zitat Gieras JF, Saari J (2012) Performance calculation for a high-speed solid-rotor induction motor. IEEE Trans. Ind. Electron. 59(6):2689–2700CrossRef Gieras JF, Saari J (2012) Performance calculation for a high-speed solid-rotor induction motor. IEEE Trans. Ind. Electron. 59(6):2689–2700CrossRef
5.
Zurück zum Zitat Boglietti A, Member S, Cavagnino A, Member S, Lazzari M (2011) Computational algorithms for induction-motor equivalent circuit parameter determination—part I : resistances and leakage reactance 58(9): 3723–3733 Boglietti A, Member S, Cavagnino A, Member S, Lazzari M (2011) Computational algorithms for induction-motor equivalent circuit parameter determination—part I : resistances and leakage reactance 58(9): 3723–3733
6.
Zurück zum Zitat Boglietti A, Member S, Cavagnino A, Lazzari M (2007) Geometrical approach to induction motor design. In: Conference of the IEEE industrial electronics society, 2007, no. 1, pp. 149–156 Boglietti A, Member S, Cavagnino A, Lazzari M (2007) Geometrical approach to induction motor design. In: Conference of the IEEE industrial electronics society, 2007, no. 1, pp. 149–156
7.
Zurück zum Zitat Yamazaki K (1999) Modeling and analysis of canned motors for hermetic compressors using combination of 2D and 3D finite element method. In: IEEE Int. Electr. Mach. Drives Conf., pp. 377–379 Yamazaki K (1999) Modeling and analysis of canned motors for hermetic compressors using combination of 2D and 3D finite element method. In: IEEE Int. Electr. Mach. Drives Conf., pp. 377–379
8.
Zurück zum Zitat Gao L, Wei J, Li C, Liang Y (2017) Analyses on performances of megawatt double-canned induction motors with different can materials. IEEE Trans Energy Convers 32(2):667–674CrossRef Gao L, Wei J, Li C, Liang Y (2017) Analyses on performances of megawatt double-canned induction motors with different can materials. IEEE Trans Energy Convers 32(2):667–674CrossRef
9.
Zurück zum Zitat Yu Q, Wang X, Cheng Y (2016) Electromagnetic modeling and analysis of can effect of a canned induction electrical machine. IEEE Trans Energy Convers 31(4):1471–1478CrossRef Yu Q, Wang X, Cheng Y (2016) Electromagnetic modeling and analysis of can effect of a canned induction electrical machine. IEEE Trans Energy Convers 31(4):1471–1478CrossRef
10.
Zurück zum Zitat Hernandez IA, Peralta-sanchez E, Alvarez JA, Carlos J (2018) Validating analytical model for steady-state can losses in a canned permanent magnet motor. IETE J Res 2063:430–437CrossRef Hernandez IA, Peralta-sanchez E, Alvarez JA, Carlos J (2018) Validating analytical model for steady-state can losses in a canned permanent magnet motor. IETE J Res 2063:430–437CrossRef
11.
Zurück zum Zitat Burkhardt Y, Huth G, Urschel S (2010) Eddy current losses in PM canned motors. In: 19th Int. Conf. Electr. Mach. ICEM 2010 Burkhardt Y, Huth G, Urschel S (2010) Eddy current losses in PM canned motors. In: 19th Int. Conf. Electr. Mach. ICEM 2010
12.
Zurück zum Zitat Liang YP, Hu YL, Liu X, Li CX (2014) Calculation and analysis of can losses of canned induction motor. IEEE Trans Ind. Electron. 61(9):4531–4538CrossRef Liang YP, Hu YL, Liu X, Li CX (2014) Calculation and analysis of can losses of canned induction motor. IEEE Trans Ind. Electron. 61(9):4531–4538CrossRef
13.
Zurück zum Zitat Hu X (2017) The influence of air gap thickness between the stator and heating and cooling pump. In: International conference on applied energy, 2017, pp. 259–264 Hu X (2017) The influence of air gap thickness between the stator and heating and cooling pump. In: International conference on applied energy, 2017, pp. 259–264
14.
Zurück zum Zitat Mellor PH, Roberts D, Turner DR (1991) Lumped parameter thermal model for electrical machines of TEFC design. IEE Proc B Electr Power Appl 138(5):205–218CrossRef Mellor PH, Roberts D, Turner DR (1991) Lumped parameter thermal model for electrical machines of TEFC design. IEE Proc B Electr Power Appl 138(5):205–218CrossRef
15.
Zurück zum Zitat Kylander G (1995) Thermal modelling of small cage induction motors. Ph. D. Thesis Chalmers University of technology Kylander G (1995) Thermal modelling of small cage induction motors. Ph. D. Thesis Chalmers University of technology
16.
Zurück zum Zitat Okoro OI (2005) Steady and transient states thermal analysis of a 7.5-kW squirrel-cage induction machine at rated-load operation. IEEE Trans Energy Convers 20(4):730–736CrossRef Okoro OI (2005) Steady and transient states thermal analysis of a 7.5-kW squirrel-cage induction machine at rated-load operation. IEEE Trans Energy Convers 20(4):730–736CrossRef
17.
Zurück zum Zitat Boglietti A, Cavagnino A, Lazzari M, Pastorelli M (2002) A Simplified thermal model for variable speed self cooled industrial induction motor. In: Conf. Rec. 2002 IEEE Ind. Appl. Conf. 37th IAS Annu. Meet. (Cat. No.02CH37344), vol. 2, pp. 723–730 Boglietti A, Cavagnino A, Lazzari M, Pastorelli M (2002) A Simplified thermal model for variable speed self cooled industrial induction motor. In: Conf. Rec. 2002 IEEE Ind. Appl. Conf. 37th IAS Annu. Meet. (Cat. No.02CH37344), vol. 2, pp. 723–730
18.
Zurück zum Zitat Staton D, Boglietti A, Cavagnino A (2005) Solving the more difficult aspects of electric motor thermal analysis in small and medium size industrial induction motors. IEEE Trans Energy Convers 20(3):620–628CrossRef Staton D, Boglietti A, Cavagnino A (2005) Solving the more difficult aspects of electric motor thermal analysis in small and medium size industrial induction motors. IEEE Trans Energy Convers 20(3):620–628CrossRef
19.
Zurück zum Zitat Boglietti A, Cavagnino A, Staton D (2007) Determination of critical parameters in electrical machine thermal models. In: IEEE industry applications conference annual meeting, 2007, no. 1, pp. 73–80 Boglietti A, Cavagnino A, Staton D (2007) Determination of critical parameters in electrical machine thermal models. In: IEEE industry applications conference annual meeting, 2007, no. 1, pp. 73–80
20.
Zurück zum Zitat Yu Q, Wang X, Cheng Y (2016) Thermal analysis of a canned switched reluctance drive with a novel network. Appl Therm Eng 109:535–541CrossRef Yu Q, Wang X, Cheng Y (2016) Thermal analysis of a canned switched reluctance drive with a novel network. Appl Therm Eng 109:535–541CrossRef
21.
Zurück zum Zitat Rostami N, Feyzi MR, Pyrhonen J, Parviainen A, Niemela M (2013) Lumped-parameter thermal model for axial flux permanent magnet. IEEE Trans. Magn. 49(3):1178–1184CrossRef Rostami N, Feyzi MR, Pyrhonen J, Parviainen A, Niemela M (2013) Lumped-parameter thermal model for axial flux permanent magnet. IEEE Trans. Magn. 49(3):1178–1184CrossRef
22.
Zurück zum Zitat Chen Q, Zou Z, Cao B (2017) Lumped-Parameter Thermal Network Model and Experimental Research of Interior PMSM for Electric Vehicle. CES Trans. Electr. Mach. Syst. 1(3):367–374CrossRef Chen Q, Zou Z, Cao B (2017) Lumped-Parameter Thermal Network Model and Experimental Research of Interior PMSM for Electric Vehicle. CES Trans. Electr. Mach. Syst. 1(3):367–374CrossRef
23.
Zurück zum Zitat Weili L, Xiaochen Z (2007) Numerical analysis of thermal behavior of canned motor. In: 2007 IEEE international symposium on industrial electronics, vol. 380, no. v, pp. 1189–1194 Weili L, Xiaochen Z (2007) Numerical analysis of thermal behavior of canned motor. In: 2007 IEEE international symposium on industrial electronics, vol. 380, no. v, pp. 1189–1194
24.
Zurück zum Zitat IEEE Society (2015) IEEE standard test procedure for thermal evaluation of systems of insulating materials for random-wound AC electric machinery, Std 117-20. IEEE Power and Energy Society IEEE Society (2015) IEEE standard test procedure for thermal evaluation of systems of insulating materials for random-wound AC electric machinery, Std 117-20. IEEE Power and Energy Society
25.
Zurück zum Zitat IEEE Society (1988) IEEE guide for the statistical analysis of thermal life test data. IEEE IEEE Society (1988) IEEE guide for the statistical analysis of thermal life test data. IEEE
26.
Zurück zum Zitat IEEE Society (2004) Standard test procedure for polyphase induction motors and generators, IEEE Power IEEE Society (2004) Standard test procedure for polyphase induction motors and generators, IEEE Power
27.
Zurück zum Zitat IEEE Society (1995) IEEE standard test procedure for polyphase induction motors having liquid in the magnetic gap, IEEE Power IEEE Society (1995) IEEE standard test procedure for polyphase induction motors having liquid in the magnetic gap, IEEE Power
28.
Zurück zum Zitat Peralta-Sánchez E, Smith AC (2009) Line-start permanent-magnet machines using a canned rotor. IEEE Trans Ind Appl 45(3):903–910CrossRef Peralta-Sánchez E, Smith AC (2009) Line-start permanent-magnet machines using a canned rotor. IEEE Trans Ind Appl 45(3):903–910CrossRef
29.
Zurück zum Zitat ALTAIR (2017) Flux 2D software: user guide, physical description, solving and post- processing ALTAIR (2017) Flux 2D software: user guide, physical description, solving and post- processing
30.
Zurück zum Zitat Bertotti G (1988) General properties of power losses in soft ferromagnetic materials. IEEE Trans Magn 24:621–630CrossRef Bertotti G (1988) General properties of power losses in soft ferromagnetic materials. IEEE Trans Magn 24:621–630CrossRef
31.
Zurück zum Zitat Yamazaki K, Fukushima N (2010) Iron-loss modeling for rotating machines: comparison between Bertotti’s three-term expression and 3-D Eddy-current analysis. IEEE Trans Magn 46(8):3121–3124CrossRef Yamazaki K, Fukushima N (2010) Iron-loss modeling for rotating machines: comparison between Bertotti’s three-term expression and 3-D Eddy-current analysis. IEEE Trans Magn 46(8):3121–3124CrossRef
32.
Zurück zum Zitat Churchill SW (1975) Correlating equations for laminar turbulent free convection from horizontal cylinder. Int J Heat Mass Transf 18(9):1049–1053CrossRef Churchill SW (1975) Correlating equations for laminar turbulent free convection from horizontal cylinder. Int J Heat Mass Transf 18(9):1049–1053CrossRef
33.
Zurück zum Zitat Staton DA, Cavagnino A (2008) Convection heat transfer and flow calculations suitable for electric machines thermal models. IEEE Trans Ind Electron 55(10):3509–3516CrossRef Staton DA, Cavagnino A (2008) Convection heat transfer and flow calculations suitable for electric machines thermal models. IEEE Trans Ind Electron 55(10):3509–3516CrossRef
Metadaten
Titel
Electrical–thermal modeling of a double-canned induction motor for electrical performance analysis and motor lifetime determination
verfasst von
Amadou Tinni
Dominique Knittel
Mohammed Nouari
Guy Sturtzer
Publikationsdatum
23.07.2020
Verlag
Springer Berlin Heidelberg
Erschienen in
Electrical Engineering / Ausgabe 1/2021
Print ISSN: 0948-7921
Elektronische ISSN: 1432-0487
DOI
https://doi.org/10.1007/s00202-020-01062-y

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