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Influence of material of rotor end plate on 3-D electromagnetic field and eddy current losses in end region of hydro-generator

机译:转子端板材料对水轮发电机端部区域三维电磁场和涡流损耗的影响

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In hydro-generator, rotor end plate is one of the most important components, which is usually placed in the space between pole and the end of field winding, used to clamp the laminated pole and prevent the damping ring from flying off because of large centrifugal force. Generally, rotor end plate is made of 1Crl8Ni9Ti, forged steel and cast steel, which are either non-magnetic or magnetic material. Magnetic characteristic of rotor end plate affects the distribution of end leakage magnetic field, and then affects eddy current losses of end structures. Therefore, it is necessary to research the influence of magnetic characteristic of rotor end plate on the electromagnetic field and eddy current losses of end structures. In the past, scholar paid more attention on the material of stator clamping plate and clamping finger [1], however, few people studied the influence of material of rotor end plate on electromagnetic field and eddy current losses in end region of hydro-generator. In this paper, a 250MW hydro-generator is taken as an example, physical and mathematical models of 3-D nonlinear transient electromagnetic field in end region are established. When non-magnetic and magnetic materials are adopted, transient electromagnetic field and eddy current losses of stator end structures are contrastively analyzed, which will provide useful reference for the reasonable design of end structures.
机译:在水轮发电机中,转子端板是最重要的组件之一,通常放置在磁极与励磁绕组末端之间的空间中,用于夹持叠片极并防止阻尼环因离心力大而飞散。力。通常,转子端板由1Crl8Ni9Ti,锻钢和铸钢制成,它们均为非磁性或磁性材料。转子端板的磁特性影响端漏磁场的分布,进而影响端部结构的涡流损耗。因此,有必要研究转子端板的磁特性对端部结构的电磁场和涡流损耗的影响。过去,学者对定子夹板和夹爪的材料给予了更多的关注[1],但是很少有人研究转子端板的材料对水轮发电机端部区域的电磁场和涡流损耗的影响。本文以一台250MW水轮发电机为例,建立了端部区域3D非线性瞬变电磁场的物理数学模型。当采用非磁性和磁性材料时,对比分析定子端部结构的瞬变电磁场和涡流损耗,为端部结构的合理设计提供参考。

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