高压全膜电容器的热分析与改进措施研究OA
Thermal Analysis and Improvement Method Research on High Voltage Full Film Capacitor
掌握温度场分布规律是增强电容器稳定运行性能的重要环节与技术难点.结合某型高压全膜电容器结构特征,采用有限体积法进行三维温度场分布求解,获得复杂电容器内部最热点温度及对应位置,并研究温度参数与分布特点.在此基础上,为增强电容器的散热能力,提出新增散热流道与增加元件铝箔厚度的改进方案.研究表明,所采用的三维温度场分析能够准确反映电容器内部温度特性,所提出的改进措施可有效降低易击穿点温度达33.6%.
Mastering the distribution law of temperature field is an important link and technical difficulty in enhancing the stable operational performance of capacitors.Combined the structural characteristics of a certain type of high voltage full film capacitor,using the finite volume method to solve the three-dimensional temperature field distribution,the hottest temperature and corresponding position is obtained inside the complex capacitor,and its temperature parameters and distribution characteristics are studied.On this basis,in order to enhance the heat dissipation capacity of the capacitor,the improvement plans are proposed by adding new heat dissipation channels and increasing the thickness of component aluminum foil.The study indicates that the used three-dimensional temperature field analysis can accurately reflect the internal temperature characteristics of the capacitor,and the proposed improvement measures can effectively reduce the temperature of breakdown points by 33.6%.
叶泽韬;李晓军;郑艳文;胡晨昊;胡斯登
浙江大学电气工程学院,浙江 杭州 310027宁波市江北九方和荣电气有限公司,浙江宁波 315300卧龙电气驱动集团股份有限公司,浙江绍兴 312300浙江大学电气工程学院,浙江 杭州 310027浙江大学电气工程学院,浙江 杭州 310027
动力与电气工程
高压全膜电容器温度场热分析改进措施
high voltage full film capacitortemperature fieldthermal analysisimprovement measures
《电器与能效管理技术》 2024 (10)
59-64,6
中央高校基本科研业务费专项资金资助(226-2024-00072)
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