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Determination of the Equivalent Mechanical Properties of the Stator Core for Vibration Analysis in Hydro Generators

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

Autorschaft

  • Allan De Barros
  • Amir Ebrahimi
  • Babette Schwarz
  • Bernd Ponick

Externe Organisationen

  • Universität Bremen
  • Voith GmbH & Co. KGaA

Details

OriginalspracheEnglisch
Titel des Sammelwerks2024 27th International Conference on Electrical Machines and Systems, ICEMS 2024
Herausgeber (Verlag)Institute of Electrical and Electronics Engineers Inc.
Seiten2443-2450
Seitenumfang8
ISBN (elektronisch)9784886864406
ISBN (Print)979-8-3503-7910-5
PublikationsstatusVeröffentlicht - 26 Nov. 2024
Veranstaltung27th International Conference on Electrical Machines and Systems, ICEMS 2024 - Fukuoka, Japan
Dauer: 26 Nov. 202429 Nov. 2024

Abstract

A crucial task for the assessment of magnetically induced vibrations in electrical machines is the determination of the eigenmodes and eigenfrequencies of the stator. The mechanical model for this purpose is usually based on the assumption of equivalent material properties to homogenize the laminated stator core. However, there are few references available in the literature on the appropriate equivalent parameters in the specific case of hydro generators. The objective of this paper is to determine the necessary equivalent parameters to represent the mechanical properties of the stator core of hydro generators under different temperatures and clamping pressures. This is achieved by developing a prototype of a stator core sector, on which several experimental modal analyses are performed under laboratory conditions. The experimental data are used to calibrate a calculation model, providing the equivalent material parameters which best fit the measurements. The main findings of this work are the empirical values of the Young's and shear moduli involving the component perpendicular to the laminations' plane, as well as their dependence on the temperature and clamping pressure. The results can be employed as inputs to the mechanical model of the complete machine in future works.

ASJC Scopus Sachgebiete

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Determination of the Equivalent Mechanical Properties of the Stator Core for Vibration Analysis in Hydro Generators. / De Barros, Allan; Ebrahimi, Amir; Schwarz, Babette et al.
2024 27th International Conference on Electrical Machines and Systems, ICEMS 2024. Institute of Electrical and Electronics Engineers Inc., 2024. S. 2443-2450.

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

De Barros, A, Ebrahimi, A, Schwarz, B & Ponick, B 2024, Determination of the Equivalent Mechanical Properties of the Stator Core for Vibration Analysis in Hydro Generators. in 2024 27th International Conference on Electrical Machines and Systems, ICEMS 2024. Institute of Electrical and Electronics Engineers Inc., S. 2443-2450, 27th International Conference on Electrical Machines and Systems, ICEMS 2024, Fukuoka, Japan, 26 Nov. 2024. https://doi.org/10.23919/ICEMS60997.2024.10921170
De Barros, A., Ebrahimi, A., Schwarz, B., & Ponick, B. (2024). Determination of the Equivalent Mechanical Properties of the Stator Core for Vibration Analysis in Hydro Generators. In 2024 27th International Conference on Electrical Machines and Systems, ICEMS 2024 (S. 2443-2450). Institute of Electrical and Electronics Engineers Inc.. https://doi.org/10.23919/ICEMS60997.2024.10921170
De Barros A, Ebrahimi A, Schwarz B, Ponick B. Determination of the Equivalent Mechanical Properties of the Stator Core for Vibration Analysis in Hydro Generators. in 2024 27th International Conference on Electrical Machines and Systems, ICEMS 2024. Institute of Electrical and Electronics Engineers Inc. 2024. S. 2443-2450 doi: 10.23919/ICEMS60997.2024.10921170
De Barros, Allan ; Ebrahimi, Amir ; Schwarz, Babette et al. / Determination of the Equivalent Mechanical Properties of the Stator Core for Vibration Analysis in Hydro Generators. 2024 27th International Conference on Electrical Machines and Systems, ICEMS 2024. Institute of Electrical and Electronics Engineers Inc., 2024. S. 2443-2450
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title = "Determination of the Equivalent Mechanical Properties of the Stator Core for Vibration Analysis in Hydro Generators",
abstract = "A crucial task for the assessment of magnetically induced vibrations in electrical machines is the determination of the eigenmodes and eigenfrequencies of the stator. The mechanical model for this purpose is usually based on the assumption of equivalent material properties to homogenize the laminated stator core. However, there are few references available in the literature on the appropriate equivalent parameters in the specific case of hydro generators. The objective of this paper is to determine the necessary equivalent parameters to represent the mechanical properties of the stator core of hydro generators under different temperatures and clamping pressures. This is achieved by developing a prototype of a stator core sector, on which several experimental modal analyses are performed under laboratory conditions. The experimental data are used to calibrate a calculation model, providing the equivalent material parameters which best fit the measurements. The main findings of this work are the empirical values of the Young's and shear moduli involving the component perpendicular to the laminations' plane, as well as their dependence on the temperature and clamping pressure. The results can be employed as inputs to the mechanical model of the complete machine in future works.",
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Download

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AU - De Barros, Allan

AU - Ebrahimi, Amir

AU - Schwarz, Babette

AU - Ponick, Bernd

N1 - Publisher Copyright: © 2024 The Institute of Electrical Engineers of Japan.

PY - 2024/11/26

Y1 - 2024/11/26

N2 - A crucial task for the assessment of magnetically induced vibrations in electrical machines is the determination of the eigenmodes and eigenfrequencies of the stator. The mechanical model for this purpose is usually based on the assumption of equivalent material properties to homogenize the laminated stator core. However, there are few references available in the literature on the appropriate equivalent parameters in the specific case of hydro generators. The objective of this paper is to determine the necessary equivalent parameters to represent the mechanical properties of the stator core of hydro generators under different temperatures and clamping pressures. This is achieved by developing a prototype of a stator core sector, on which several experimental modal analyses are performed under laboratory conditions. The experimental data are used to calibrate a calculation model, providing the equivalent material parameters which best fit the measurements. The main findings of this work are the empirical values of the Young's and shear moduli involving the component perpendicular to the laminations' plane, as well as their dependence on the temperature and clamping pressure. The results can be employed as inputs to the mechanical model of the complete machine in future works.

AB - A crucial task for the assessment of magnetically induced vibrations in electrical machines is the determination of the eigenmodes and eigenfrequencies of the stator. The mechanical model for this purpose is usually based on the assumption of equivalent material properties to homogenize the laminated stator core. However, there are few references available in the literature on the appropriate equivalent parameters in the specific case of hydro generators. The objective of this paper is to determine the necessary equivalent parameters to represent the mechanical properties of the stator core of hydro generators under different temperatures and clamping pressures. This is achieved by developing a prototype of a stator core sector, on which several experimental modal analyses are performed under laboratory conditions. The experimental data are used to calibrate a calculation model, providing the equivalent material parameters which best fit the measurements. The main findings of this work are the empirical values of the Young's and shear moduli involving the component perpendicular to the laminations' plane, as well as their dependence on the temperature and clamping pressure. The results can be employed as inputs to the mechanical model of the complete machine in future works.

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