首页> 外文期刊>Bulletin of the Institute of Heat Engineering >(0063) Use of 3-dimensional finite elements for computation of temperature distribution in the Stator of an Induction Motor during Direct-On-Line Starting
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(0063) Use of 3-dimensional finite elements for computation of temperature distribution in the Stator of an Induction Motor during Direct-On-Line Starting

机译:(0063)在直接在线起动期间,使用3维有限元计算感应电动机的定子中的温度分布

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Induction machines transient thermal analysis has been a subject of interest for machine designers in their effort to improve machine reliability. The stator being static is prone to high temperature. Therefore, the study of transient thermal behavior in the stator is useful to identify causes of failure in induction machines. The paper presents a three-dimensional transient heat flow through the stator of an induction motor using arch shaped elements in the r-?-z plane of the cylindrical co-ordinate system. 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 one squirrel cage Totally Enclosed Fan Cooled (TEFC) machine of 7.5 kW. Finally, the temperatures obtained by this three-dimensional approximation at different location of the stator have been compared for different stator currents considering the time required for each stator current during the transient in Direct-On-Line starting.
机译:感应电机瞬态热分析一直是电机设计人员提高电机可靠性的工作重点。定子是静态的,容易产生高温。因此,研究定子中的瞬态热行为对于确定感应电机的故障原因很有用。本文介绍了在圆柱坐标系的r-z-z平面中使用拱形元素的,通过感应电动机定子的三维瞬态热流。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。该模型应用于一台7.5 kW的鼠笼式全封闭风扇冷却(TEFC)机器。最后,考虑到直接在线启动过程中瞬态过程中每个定子电流所需的时间,针对不同的定子电流比较了在定子的不同位置处通过此三维近似获得的温度。

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