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Numerical analysis of three dimensional steady state heat conduction in the rotor of an induction motor by finite element method

机译:感应电动机转子三维稳态热传导的有限元数值分析

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In developing electric motors in general and induction motors in particular temperature limits is a key factor affecting the efficiency of the overall design. Since conventional loading of induction motors is often expensive, the estimation of temperature rise by tools of mathematical modeling becomes increasingly important. Excepting for providing a more accurate representation of the problem, the proposed model can also reduce computing costs. The paper develops a three-dimensional steady state thermal model in polar co-ordinates using finite element formulation and arch shaped elements. A temperature-time method is employed to evaluate the distribution of loss in various parts of the machine. Using these loss distributions as an input for finite element analysis, more accurate temperature distributions can be obtained. The model is applied to predict the temperature rise in the rotor of a squirrel cage 7.5 kW totally enclosed fan-cooled induction motor. The temperature distribution has been determined considering convection from the outer air gap surface and annular end surface for both totally enclosed and semi enclosed structures.
机译:在开发一般的电动机,特别是感应电动机时,温度极限是影响整体设计效率的关键因素。由于感应电动机的常规负载通常很昂贵,因此通过数学建模工具估算温度升高变得越来越重要。除了提供问题的更准确表示之外,所提出的模型还可以减少计算成本。本文利用有限元公式和拱形单元建立了极坐标下的三维稳态热模型。采用温度-时间方法来评估机器各个部分的损耗分布。使用这些损耗分布作为有限元分析的输入,可以获得更准确的温度分布。该模型用于预测7.5 kW全封闭风扇冷却感应电动机的鼠笼式转子的温度升高。对于全封闭和半封闭结构,已经考虑到来自外部气隙表面和环形端面的对流来确定温度分布。

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