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Consideration of Design and Operation on Rotational Flux Density Distributions in Hydrogenerator Stators

机译:水轮发电机定子磁通密度分布设计与运行的考虑

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摘要

Core losses in an electrical machine vary depending on the type of material, frequency of operation, and flux density magnitude and waveform. Loss prediction using pulsating models is insufficient for estimating core losses in a machine, since it does not take into account rotational core losses. Moreover, superposition of pulsating losses in the radial and tangential direction overestimates losses especially at higher flux densities. The objective of this paper is to study rotational flux distribution in the stator of the generator under different operating conditions. Distribution of rotational flux in a large hydrogenerator stator is studied by plotting the aspect ratio. It was found that increasing the yoke length and reducing the air gap increases the area of the stator with rotational flux. Varying the output power showed slight changes in the rotational flux distribution. Different optimized machine designs are investigated for rotational flux distribution; moreover, rotational core losses are measured and used for a comparative study radially across the stator.
机译:电机的铁损取决于材料的类型,工作频率以及磁通密度的大小和波形而变化。使用脉动模型进行的损耗预测不足以估计机器中的铁芯损耗,因为它没有考虑旋转铁芯损耗。此外,在径向和切向方向上脉动损耗的叠加会高估损耗,尤其是在较高的磁通密度下。本文的目的是研究不同工况下发电机定子中的旋转通量分布。通过绘制纵横比来研究大型水轮发电机定子中的旋转通量分布。已经发现,增加轭的长度并减小气隙会增加具有旋转通量的定子的面积。输出功率的变化表明旋转通量分布略有变化。针对旋转通量分布研究了不同的优化机器设计;此外,还测量了旋转铁损,并将其用于整个定子的径向比较研究。

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