Effect of Field Winding Inter-Turn Short-Circuit Positions on Rotor UMP of Turbo-Generator
Title | Effect of Field Winding Inter-Turn Short-Circuit Positions on Rotor UMP of Turbo-Generator |
Publication Type | Conference Paper |
Year of Publication | 2018 |
Authors | Meng, Qing-Fa, He, Yu-Ling, Xu, Ming-Xing, Zhang, Yu-Yang, Jiang, Hong-Chun |
Conference Name | Proceedings of the 2018 International Conference on Mechatronic Systems and Robots |
Date Published | May 2018 |
Publisher | ACM |
Conference Location | New York, NY, USA |
ISBN Number | 978-1-4503-6458-4 |
Keywords | air gap magnetic flux density (MFD), Air gaps, composability, field winding inter-turn short circuit (FWISC), Human Behavior, Metrics, pubcrawl, resilience, Resiliency, rotor unbalanced magnetic pull (UMP), Turbo-generator |
Abstract | In this paper, the rotor unbalanced magnetic pull (UMP) characteristics of different field winding inter-turn short-circuit (FWISC) positions in turbo-generator are studied. Firstly, the qualitative analysis on the air gap magnetic flux density (MFD), as well as the rotor UMPs in X-direction and Y-direction, is carried out. Then the finite element numerical simulations are respectively taken to calculate the quantitative data of rotor UMP under normal condition and three different short-circuit positions. Finally, the variation rules based on rotor UMP characteristics by experimental analysis are obtained. It is shown that the occurrence of FWISC will induce generally fundamental-frequency UMP acting on the rotor in X-direction. Moreover, the different positions of FWISC are found to be sensitive to the rotor UMP amplitudes. The closer the short-circuit position is to the big teeth, the larger the rotor UMP amplitudes in X-direction will be. |
URL | https://dl.acm.org/doi/10.1145/3230876.3230897 |
DOI | 10.1145/3230876.3230897 |
Citation Key | mengEffectFieldWinding2018 |