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Research on Resistance Enhancement Coefficient and Thermal Dissipation of Stator Strands in Huge Synchronous Generator

机译:巨大同步发电机中定子股的电阻增强系数和热散热研究

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摘要

For large generators, accurate assessment for the resistance enhancement coefficient (REC) and thermal dissipation is of great significance. With the development of design and manufacturing technology for large generators, the different cross section of the upper and lower strand becomes an effective method to reduce the heat losses. In current electromagnetism design, the eddy current analysis does not take the strand structures into account. In this paper, the REC of strands with special structures of a 150MW turbo-generator is derived by an analytic algorithm. Besides that, a mathematical model of the stator slot is established and the heat losses distribution and REC of strands are calculated by finite element method (FEM). On this basis, the stator REC and thermal dissipation of a 1000MW power turbo-generator are investigated with hollow and solid strands. The calculated results match the experimental data. All of these could provide an important theoretical basis and reference for the design of stator windings in high-power generators.
机译:对于大发电机,对电阻增强系数(REC)和热耗散的准确评估具有重要意义。随着大发电机的设计和制造技术的发展,上部和下部股线的不同横截面成为减少热损失的有效方法。在目前的电磁设计中,涡流分析不会考虑股线结构。本文通过分析算法导出了150MW涡轮发电机特殊结构的股线的rEC。除此之外,建立了定子槽的数学模型,并通过有限元方法(FEM)计算了股线的热损耗分布和股线。在此基础上,用空心和固体股线研究了1000mW功率涡轮发电机的定子REC和热耗散。计算结果匹配实验数据。所有这些都可以为高发电机中的定子绕组设计提供重要的理论基础和参考。

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