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Experimental validation of CFD modelling for heat transfer coefficient predictions in axial flux permanent magnet generators

机译:CFD模型在轴向磁通永磁发电机传热系数预测中的实验验证

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This paper describes the experimental validation of CFD modelling for heat transfer coefficients in an axial flux permanent magnet (AFPM) generator. A large scale low speed test rig was designed and constructed. The geometric parameters and the rotational speed of the test rig were determined by dimensional analysis, to ensure the flow characteristic remains unchanged as compared with commercial AFPM generators. The heat transfer coefficients in the test rig were measured at rotational Reynolds number, Re_ω from 0 to 2 × 10~6, non-dimensional flow rate, C_w up to 11,000 and gap ratio, G = 0.016, by using the combination of heat flux sensors and thermocouples. Due to the large size of the scaled-up rig, natural convection played a significant part in the heat transfer and this had to be compensated for in the forced convection heat transfer coefficient calculations. Extra experiments were designed and conducted to identify the effect of natural convection on the machine's cooling. The experimentally determined results were compared to heat transfer coefficients predicted by CFD models and good agreement was obtained.
机译:本文介绍了CFD模型在轴向磁通量永磁(AFPM)发电机中传热系数的实验验证。设计并建造了大型低速试验台。通过尺寸分析确定了试验台的几何参数和转速,以确保与商用AFPM发生器相比,流量特性保持不变。通过使用热通量的组合,在旋转雷诺数Re_ω从0到2×10〜6,无量纲流量C_w高达11,000和间隙比G = 0.016的情况下测量试验台中的传热系数。传感器和热电偶。由于大型钻机的尺寸较大,自然对流在传热中起着重要作用,而这必须在强制对流传热系数计算中予以补偿。设计并进行了额外的实验,以确定自然对流对机器冷却的影响。将实验确定的结果与CFD模型预测的传热系数进行比较,并获得了良好的一致性。

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