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首页> 外文期刊>IEEE Transactions on Energy Conversion >No-Load Voltage Waveform Optimization and Damper Bars Heat Reduction of Tubular Hydrogenerator by Different Degree of Adjusting Damper Bar Pitch and Skewing Stator Slot
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No-Load Voltage Waveform Optimization and Damper Bars Heat Reduction of Tubular Hydrogenerator by Different Degree of Adjusting Damper Bar Pitch and Skewing Stator Slot

机译:不同程度的调节减震器节距和偏斜定子槽调整空载电压波形优化和减震器降低管状水轮发电机的热量

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摘要

To analyze the influence of no-load voltage waveforms and damper bar losses and heat by the damper bar pitch and stator slot skew, finite-element model (FEM) computations are conducted. The calculation models are multislice moving electromagnetic field-circuit coupling model for the hydrogenerator and three-dimensional temperature field FEM for the rotor. This analysis considers the factors such as the rotor motion and the nonlinearity of time-varying electromagnetic field, the anisotropic heat conduction of the rotor core lamination, and the different heat dissipation conditions on the windward and the leeward sides of the poles. Then, the no-load voltage waveforms of a 36 MW tubular hydrogenerator are optimized and the damper bar heat at the rated load is reduced with the design scheme by adjusting the damper bar pitch and the stator slot skew. The results show that the waveforms of the no-load voltage are improved and the temperature of damper bars are reduced when reasonably increasing damper bar pitch and skewing stator slots. The calculated results are well coincident with the test data. The research is helpful for improving the design standard and enhancing the operation reliability of the large tubular hydrogenerator and electric network.
机译:为了分析空载电压波形,阻尼条损耗和阻尼条间距和定子槽偏斜的影响,进行了有限元模型(FEM)计算。计算模型是水轮发电机的多层运动电磁场-电路耦合模型和转子的三维温度场有限元模型。该分析考虑了诸如转子运动和时变电磁场的非线性,转子铁心叠片的各向异性热传导以及磁极的迎风面和背风面的不同散热条件等因素。然后,通过设计方案,通过调节阻尼杆节距和定子槽偏斜度,优化了36 MW管状水力发电机的空载电压波形,并通过设计方案降低了额定负载下的阻尼杆热量。结果表明,合理增加阻尼杆节距和倾斜定子槽,可以改善空载电压的波形,降低阻尼杆的温度。计算结果与测试数据非常吻合。该研究有助于提高大型管状水轮发电机和电网的设计标准,提高运行可靠性。

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