Comsol包内电动机调速时气动特性研究

S. Oskin, A.V. Miroshnikov, D. Tsokur
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引用次数: 3

摘要

工作机器的电力驱动操作需要了解电动机冷却系统参数对其温度状态的影响。可调电力驱动的广泛应用导致了电机各个部件温度的变化。在转子转速变化较大的情况下,绝缘温度过高是特别危险的。文献来源提请注意确定计算的冷却气流湍流系数的困难。本文在Comsol软件中获得了气流分布的图像。在该程序中,流动运动界面提供了计算湍流状态所需的数学模型。建立了一个小功率电动机的几何模型,并选择了在必要的假设和限制条件下计算湍流的数学模型。仿真结果表明,在转子公称转速下,转子出护壳时的最大风速为14 m/s。对这些气流的分析表明,它们具有紊流的特征,并且沿着通风通道向机器中部开始急剧下降,然后下降得更慢。在通风通道的末端,从床层流出的最大气流速度也存在偏差。对床道气流速度的实验研究证实了模拟结果具有可接受的精度。所得结果可用于Comsol程序的热态建模。此外,所获得的结果可用于与电流变频器一起工作时的调节电力驱动器的操作服务。
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Investigation of the Aerodynamic Characteristics of Electric Motors when Regulating Their Speed in the Comsol Package
Operation of electric drives of working machines requires knowledge of the influence of the parameters of the cooling system of electric motors on their temperature regime. The widespread introduction of an adjustable electric drive has led to a change in temperature of individual parts of the electric machine. The excess of the insulation temperature with a deep change in the speed of the rotor was especially dangerous. Literature sources draw attention to the difficulties of determining the calculated turbulence coefficients of cooling air flows. In this paper, the images of the air flow distribution are obtained in the Comsol software. In this program, the interfaces of flow movements are provided with the necessary mathematical models for calculating the turbulent regime. A geometric model of a low-power electric motor is formed and the necessary mathematical models for calculating turbulence with the necessary assumptions and restrictions are selected. As a result of the simulation, it was found that the maximum air velocity, at the nominal speed of the rotor, is observed when it exits the protective casing-14 m/s. Analysis of these air flows shows that they have a turbulent character and initially decrease sharply along the ventilation channels to the middle of the machine, and then decrease more slowly. There are also deviations of the maximum air flow velocities from the bed at the end of the ventilation channel. Experimental studies of air velocities in the bed channels confirmed the simulation results with acceptable accuracy. The results obtained can be used for modeling the thermal state in the Comsol program. Also, the results obtained can be used by the operation services of regulated electric drives when working with current frequency converters.
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