首页> 外文期刊>International Journal of Fluid Machinery and Systems >Comparative Performance Analysis of an Electric Motor Cooling Fan with Various Inlet Vent and Blade Shapes
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Comparative Performance Analysis of an Electric Motor Cooling Fan with Various Inlet Vent and Blade Shapes

机译:各种进气孔和叶片形状的电动机冷却风扇的比较性能分析

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Electric motors are used as the main power sources in many industrial equipments and household appliances. The miniaturization and weight reduction of electric motors generally increase the internal heat generation. Therefore, it is important to understand the flow characteristics of motor cooling fans and to improve their performance. The present study aimed at systematically investigating the effects of the inlet vent and blade shapes on the aerodynamic performance of a low-voltage electric motor cooling fan. The flow characteristics of the low-voltage electric motor cooling fan was numerically analyzed using three-dimensional Reynolds-averaged Navier-Stokes equations. The k-ε turbulence model was selected for the analysis of turbulence using a turbulence model test. An optimal grid system in the computational domain was selected through a grid dependency test. The mass flow coefficient and torque coefficient were considered as the performance parameters of the cooling fan. Eleven inlet vent shapes and eleven blade shapes of the cooling fan were tested by evaluating the aerodynamic performance of the cooling fan. The mass flow coefficient and torque coefficient were considered as the performance parameters of the motor cooling fan. Eleven inlet vent shapes on the fan cover and eleven blade shapes were tested to evaluate their effects on the mass flow coefficient and torque coefficient. The maximum mass flow coefficient of 0.0908 and the minimum torque coefficient of 0.0089, were achieved using different combinations of vent and blade shapes.
机译:电动机被用作许多工业设备和家用电器的主要动力源。电动机的小型化和轻量化通常会增加内部热量的产生。因此,了解电动机冷却风扇的流动特性并改善其性能非常重要。本研究旨在系统地研究进气孔和叶片形状对低压电动机冷却风扇空气动力性能的影响。使用三维雷诺平均Navier-Stokes方程数值分析了低压电动机冷却风扇的流动特性。选择k-ε湍流模型以使用湍流模型测试分析湍流。通过网格依赖性测试选择了计算域中的最佳网格系统。质量流量系数和转矩系数被认为是冷却风扇的性能参数。通过评估冷却风扇的空气动力学性能,测试了冷却风扇的11个进气孔形状和11个叶片形状。质量流量系数和转矩系数被认为是电动机冷却风扇的性能参数。测试了风扇罩上的11种进气孔形状和11种叶片形状,以评估它们对质量流量系数和扭矩系数的影响。使用排气孔和叶片形状的不同组合可获得最大质量流量系数0.0908和最小扭矩系数0.0089。

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