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首页> 外文期刊>Journal of Heat Transfer >Numerical Study of Convective Heat Transfer Enhancement in a Pipe Rotating Around a Parallel Axis
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Numerical Study of Convective Heat Transfer Enhancement in a Pipe Rotating Around a Parallel Axis

机译:绕平行轴旋转的对流换热强化的数值研究

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Cooling of electrical machines is nowadays of high interest in order to improve their efficiency. In railway applications, electrical motors can be shrouded in order to avoid particles to be deposited inside. To ensure a satisfactory cooling, pipes are placed inside the rotor and are thus rotating. Improvements in convective heat transfer inside the rotating pipes were numerically investigated. Model was first validated against experimental data and after that several geometry modifications were tested. Influence of the angle of attack of the fluid at the inlet to the pipe was discussed and it was shown that heat transfer can be significantly increased near the pipe inlet. In addition to that changing a circular pipe with an elliptical pipe was investigated in two ways: fixing the same hydraulic diameter or the same equivalent diameter. It was shown that the cooling efficiency can be significantly increased. The best overall heat transfer enhancement of about 45% exhibited elliptic pipes located orthogonal to the rotation radius and having the same cross-section as the reference circular pipes. Results can be used by designers of electrical machines in order to choose the best cooling strategy.
机译:如今,为了提高效率,人们对电机的冷却非常感兴趣。在铁路应用中,可以将电动机围起来,以避免颗粒沉积在内部。为了确保令人满意的冷却,将管道放置在转子内部并进行旋转。数值研究了旋转管内部对流传热的改进。首先根据实验数据验证模型,然后测试了几种几何形状修改。讨论了流体在管道入口处的迎角的影响,结果表明,在管道入口附近,传热可以显着增加。除此以外,还通过两种方式研究了用椭圆管更换圆形管的问题:固定相同的液压直径或相同的等效直径。结果表明,冷却效率可以大大提高。最佳的整体传热增强效果约为45%,其椭圆管与旋转半径正交,并且横截面与参考圆形管相同。电机设计者可以使用结果来选择最佳的冷却策略。

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