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首页> 外文期刊>Energy Conversion, IEEE Transactions on >Calculation of a Complex 3-D Model of a Turbogenerator With End Region Regarding Electrical Losses, Cooling, and Heating
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Calculation of a Complex 3-D Model of a Turbogenerator With End Region Regarding Electrical Losses, Cooling, and Heating

机译:带有发电机端部区域的电损耗,冷却和加热的复杂3-D模型的计算

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摘要

A significant problem of turbogenerators on complex end structures is overheating of local parts caused by end losses and complex fluid flow in the end region. Therefore, it is important to investigate the 3-D flow and heat transfer process in the end. Using a 200-MW air-cooled turbogenerator as an example, the influences of end cores and the actual shapes and material of the end coils, press finger, press plate, and copper shield are considered for the end field calculation; then, the physical and mathematical models of the coil end with involute portions are created. The 3-D electromagnetic field was calculated and the losses of different parts in the end and its distribution were obtained. Based on this, the losses from magnetic field calculations will be applied to the end as heat sources in the temperature field. For symmetry of the ventilated structure, the fluid and thermal physical models of the generator within the half-axial section were determined. A set of equations of fluid flow and heat transfer were derived from the fluid–solid conjugated heat transfer and the fluid and temperature distributions were obtained after solving the equations. All of the aforementioned will provide a theoretical basis for the generator safe operation.
机译:涡轮发电机在复杂的端部结构上的一个重要问题是由端部损失和端部区域中复杂的流体流引起的局部零件过热。因此,最终研究3D流动和传热过程非常重要。以一个200兆瓦的风冷涡轮发电机为例,考虑了端部铁心的影响以及端部线圈,压指,压板和铜屏蔽的实际形状和材料的影响;然后,创建具有渐开线部分的线圈端的物理和数学模型。计算了三维电磁场,得到了不同部位最终的损耗及其分布。基于此,来自磁场计算的损耗将作为温度场中的热源应用于终端。为了使通风结构对称,确定了发电机在半轴截面内的流体和热物理模型。从流固共轭传热导出了一组流体流动和传热方程,并在求解这些方程后获得了流体和温度分布。所有上述内容将为发电机的安全运行提供理论依据。

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