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Design Analysis of Brushless Direct Current Generator

机译:无刷直流发电机的设计分析

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摘要

In this work, optimisation of a brushless direct current (BLDC) generator design was undertaken by carrying out an electromagnetic and computational fluid dynamic study. The studies were carried out for different loading-overloading conditions and angular speeds, keeping in consideration the required electrical and thermal parameters, firstly for the initial design and then for optimised designs. In the initial phase, transient electromagnetic simulations were done using Ansys Maxwell to estimate power output, flux densities, heat losses et al. In the next phase, steady state conjugate heat transfer simulations using frozen rotor method for rotating domains were carried out in Ansys CFX using the heat loss values obtained from electromagnetic study in the first phase. The results from conjugate heat transfer were obtained in the form of temperature and flow parameters. After a thorough study and comparison of the results for different designs, obtained in the two phases, it was seen one of the optimised designs showed better electromagnetic, thermal and flow parameters as compared to the initial design and satisfied all the optimum electrical and thermal parameters.
机译:在这项工作中,通过进行电磁和计算流体动力学研究,对无刷直流(BLDC)发电机设计进行了优化。针对不同的加载-过载条件和角速度进行了研究,首先考虑了初始设计,然后针对优化设计,同时考虑了所需的电气和热参数。在初始阶段,使用Ansys Maxwell进行了瞬态电磁仿真,以估算功率输出,磁通密度,热损耗等。在下一阶段,在Ansys CFX中使用从第一阶段的电磁研究获得的热损失值,使用冻结转子方法对旋转域进行稳态共轭传热模拟。共轭传热的结果以温度和流量参数的形式获得。经过深入研究并比较了两个阶段中不同设计的结果,可以发现,与初始设计相比,一种优化设计显示出更好的电磁,热和流量参数,并且满足了所有最佳电和热参数。

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