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Impact of the Fan Design and Rotational Direction on the Thermal Characteristics of Induction Motors

机译:风扇设计和旋转方向对感应电动机热特性的影响

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Low manufacturing cost and high reliability make the induction machine suitable for different constant and variable speed applications. For machines operating in hazardous environments, the fully enclosed type is used, with limited access to the stator and rotor. Indirect air cooling method is usually employed with fins casing and an attached fan. Thus, the fan design is crucial as being the only resource to remove heat away from the machine. A poor thermal management of the electrical machine can lead to a machine failure and reduce the machine lifespan. Some machines are operating for bi-directional operation, which means the performance of the machine should be reviewed under both conditions. This paper focus on the impact of the fan cooling on the thermal profile of a 5.5 kW induction machine under bidirectional operation. Comparative studies using CFD simulations have been carried out to identify the effect of different fan types when operating at particular conditions. The performed work provides an understanding of the air flow under bi-directional operation, which notes the importance of the fan design and rotational direction in induction machines.
机译:低制造成本和高可靠性使感应电机适用于不同的恒速和变速应用。对于在危险环境中运行的机器,使用全封闭式,接触定子和转子的通道有限。间接空气冷却方法通常用于翅片外壳和附带的风扇。因此,风扇设计是唯一可以将热量从机器中带走的资源,因此至关重要。电机不良的热管理会导致机器故障并缩短机器寿命。某些机器正在双向运行,这意味着在两种情况下都应检查机器的性能。本文重点研究了风扇冷却对双向运行下5.5 kW感应电机的热性能的影响。已经进行了使用CFD模拟的比较研究,以识别在特定条件下运行时不同类型风扇的影响。所完成的工作使您可以了解双向操作下的气流,从而注意到了风扇设计和感应电机旋转方向的重要性。

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