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Impact of the Geometrical Form on the Enhancement of Heat Transfer in Grooved Rotor of Electrical Machines

机译:几何形式对电机沟槽转子热传递增强的影响

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In this paper, we studied numerically using ANSYS Fluent software the heat transfer by convection in an annulo-cylindrical space of an axial air flow between a rotor rotating at constant angular velocity and a fixed stator. The aim of this work is to study the impact of the geometric shape mounted on the rotor on the improvement of heat transfer in electrical machines. For this purpose, the SST (Shear Stress Transport) model has been employed to predict the thermal effect inside the grooves. The simulated results are given in terms of streamlines, isotherms, temperature profiles and local Nusselt numbers. The results show that the trapezoidal shape «b=10mm» is interesting from a thermal point of view compared to other configurations (rectangular and trapezoidal «b=30mm» shapes).
机译:在本文中,我们使用ANSYS流畅的软件在数值上进行了研究,通过对流在恒定角速度旋转的转子之间的轴向空气流的轴向空间的绕组空间中的传热传热。这项工作的目的是研究安装在转子上的几何形状对电机热传递的改善。为此目的,已经采用SST(剪切应力传输)模型来预测凹槽内的热效应。模拟结果是以简化,等温线,温度谱和局部营养数为赋予的。结果表明,与其他配置相比,梯形形状«B = 10mm»与热视点相比是有趣的(矩形和梯形«B = 30mm»形状)。

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