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电力设备载流连接板温升研究

Temperature Rise Studies on Electrical Equipment Current-carrying Patch Board

  • 摘要: 针对电力设备载流故障与接触电阻、设备载流、外部环境温度及其结构尺寸之间的关系,研究建立了高压电气设备载流连接板温升故障的有限元计算方法,借助传热学理论,建立温升模型。并针对一起35 kV电流互感器载流连接板仿真发热故障进行了ANSYS计算分析,重点研究了载流连接板通过的电流大小、外部环境温度及连接板尺寸对其温度升高的影响。该分析结果可以用于对红外测温过程中电气设备电流型致热故障进行参考分析,并对实际设计中生产厂家选用高压电气设备一次电流连接板尺寸大小有一定的指导意义。

     

    Abstract: According to the relationship between the electrical equipment current-carrying fault and contact resistance, loaded-current, surface environmental temperature and board dimension,this paper study and set up high-voltage electrical equipment current-carrying patch board fault temperature rise fault finite element approach, by means of heat transfer theory, build temperature rise model. According to a 35 kV current transformer loaded-current patch board heating-fault, this paper analysis by the ANSYS simulation calculation way,and research focus on current-carrying temperature rais effect of current size, surface environmental temperature and board dimension. Analytic result has important references for the current-heating fault judgment of the electrical equipment, and has important references for the manufactures selecting board dimension on high-voltage electrical equipment.

     

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