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Influence of Copper Screen Thickness on Three-Dimensional Electromagnetic Field and Eddy Current Losses of Metal Parts in End Region of Large Water-Hydrogen–Hydrogen-Cooled Turbogenerator

机译:铜屏厚度对大型水氢氢冷汽轮发电机端部区域三维电磁场和金属零件涡流损耗的影响

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摘要

Aiming at the complexity of the structure in the end region of large turbogenerators, 3-D mathematical and physical models of nonlinear transient eddy current field are given by taking a 330-MW water-hydrogen–hydrogen-cooled turbogenerator for example. Both nonlinearity of $B$$H$ curve and noncontact structure between the copper screen and press plate, as well as the evolvent of stator end windings, were taken into consideration. When the copper screen thickness is different in the end region of the generator, 3-D transient electromagnetic field and losses of metal parts were calculated under no-load and rated-load conditions by finite-element method. The metal part losses, which were obtained from transient electromagnetic field, were applied to the thermal field as heat sources. Temperatures of copper screen were gained after the thermal field was calculated in the end region. The calculated results coincide well with the measured data.
机译:针对大型汽轮发电机端部结构的复杂性,以330MW水氢氢冷汽轮发电机为例,给出了非线性瞬态涡流场的3D数学和物理模型。 $ B $ $ H $的两种非线性考虑了 曲线和铜屏蔽层与压板之间的非接触结构,以及定子端部绕组的演变。当发电机端部的铜屏厚度不同时,采用有限元法计算了空载和额定负荷条件下的3-D瞬变电磁场和金属零件的损耗。从瞬变电磁场获得的金属零件损耗作为热源应用于热场。计算完末端区域的热场后,便获得了铜筛网的温度。计算结果与实测数据吻合良好。

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