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Influence of Copper Shield Structure on 3-D Electromagnetic Field, Fluid and Temperature Fields in End Region of Large Turbogenerator

机译:铜屏蔽结构对大型汽轮发电机端部区域三维电磁场,流体和温度场的影响

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A new kind of the copper shield structure called the empty solid copper shield structure (ESCSS) in the large turbogenerator is proposed in this paper. Based on the complex structure characteristics of a 330-MW water–hydrogen–hydrogen cooled turbogenerator, the flow network within a half of the generator is established, and the total flow rate, pressure, flow rates (boundary conditions) of the various ventilation ducts and the chambers in the generator are separately obtained after solving the equations of the flow network when the traditional copper shield structure and the ESCSS are adopted. The 3-D transient electromagnetic field of the generator end region is calculated by using the time-stepping FEM, and the electromagnetic loss distributions (heat sources) are determined separately. Then, the fluid and thermal analysis model for the whole end region is established. Through numerical calculating, the whole end region 3-D fluid and temperature distributions are obtained separately. The results show that the new copper shield structure makes the copper shield temperature much lower. Meanwhile, the copper shield material is saved. The obtained conclusions may provide useful reference for the optimal design and research of the large turbogenerator.
机译:提出了一种新型的大型涡轮发电机铜屏蔽结构,称为空固态铜屏蔽结构(ESCSS)。根据一台330 MW水-氢-氢冷却的涡轮发电机的复杂结构特征,建立了发电机一半内的流动网络,并计算了各种通风管道的总流量,压力,流量(边界条件)当采用传统的铜屏蔽结构和ESCSS时,在求解流网络方程后,分别获得发生器的腔室。发电机端部区域的3-D瞬态电磁场通过使用时间步进有限元法进行计算,并分别确定电磁损耗分布(热源)。然后,建立整个端部区域的流体和热分析模型。通过数值计算,分别获得了整个末端区域的3-D流体和温度分布。结果表明,新的铜屏蔽结构使铜屏蔽温度大大降低。同时,节省了铜屏蔽材料。所得结论可为大型涡轮发电机的优化设计和研究提供参考。

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