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Effectiveness of Stress Grading System Builds on the Heat Production in a Form-Wound Coil of an Inverter-fed Rotating Machine

机译:应力分级系统的有效性建立在变频喂入式旋转电机的绕线线圈上的热量产生上

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Limiting the temperature rise in the stress grading system in a medium voltage form-wound coil of a rotating machine driven by an adjustable speed drive is essential to prolong the life of a motor. The common way of increasing the electrical conductivity of the system, thereby to lower joule heat production and temperature rise, is to increase the build of the tape system. Simulation studies on various stress grading system builds on the heat production has been evaluated in this study. A good correlation between measured and simulated temperature profiles under pulse voltage condition confirms the validity of the simulation. The stress grading system has been simulated using the 2D axisymmetric module in COMSOL® 5.2a. The results show that increasing the number of layers of conductive armor tape can reduce the heat production in CAT region but by increasing the number of layers of stress grading tape leads to increase in heat production in SGT region. The study suggests that use of other non-linear tape materials for SGT may be needed to effectively lower the temperature rise in the stress grading system.
机译:限制由变速驱动器驱动的旋转电机的中压绕制线圈中的应力分级系统中的温度升高对于延长电动机的寿命至关重要。增加系统的电导率,从而降低焦耳热的产生和温度升高的常用方法是增加带系统的结构。在这项研究中,对基于热产生的各种应力分级系统的仿真研究进行了评估。在脉冲电压条件下,实测温度曲线与模拟温度曲线之间的良好相关性证实了模拟的有效性。应力分级系统已使用COMSOL®5.2a中的2D轴对称模块进行了仿真。结果表明,增加导电铠装带的层数可以减少CAT区域的热量产生,但是通过增加应力分级带的层数可以导致SGT区域的热量产生增加。研究表明,可能需要将其他非线性胶带材料用于SGT,才能有效降低应力分级系统中的温升。

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