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Numerical Study of Windage Power Loss for One Salient Pole Hydro Generator

机译:一个凸极水电发电机风阻功率损耗的数值研究

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In order to determine the impact of different rotor construction elements on windage losses, computational fluid dynamics study for one salient pole generator is performed. Fully predictive approach was employed to simulate air flow distribution through the machine for three different rotor configurations. Simulation results are compared with measurements and agreement of −1.2% for losses and −2.4% for flow rate were achieved. Analysis showed that between 84% and 90% of total windage loss can be attributed to two built-in centrifugal fans and poles that generate pressure required to establish necessary cooling air flow. Regardless of the rotor configuration, poles contribution to total windage losses is always significant and ranges from 29% to 80%. It has been shown that decrease of tangential velocity component in front of the inlet in interpolar space, dictated by the fan, can increase the poles losses regardless of the decrease of air flow rate through the interpolar space.
机译:为了确定不同转子施工元件对风度损失的影响,执行对一个凸极发生器的计算流体动力学研究。采用完全预测方法来模拟通过机器的空气流量分布,用于三种不同的转子配置。将仿真结果与测量结果进行比较,并且达到-1.2%的损失,达到-2.4%的流速。分析表明,84%至90%的总绕组损失归因于两个内置离心风扇和杆,产生建立必要的冷却空气流量所需的压力。无论转子配置如何,POM对总时装损失的贡献总是显着的,范围从29%到80%。已经表明,由风扇决定的内部空间中的入口前面的切向速度分量的减小可以增加磁极损耗,而不管通过内部空间的空气流速降低。

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