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Coupled Simulation of Eddy-Current Thermal Field in Medium Voltage Switchgear

机译:中压开关柜中涡流热场的耦合模拟

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The temperature rise is very critical for the normal operation of switchgear, in which eddy current and contact resistance are the two important influence factors. In this paper, firstly, the main conductive circuit model of one kind of 12kV medium voltage switchgear is established using commercial software Solidworks. Secondly, the effect of the eddy current and contact resistance on the temperature rise of switchgear is simulated with consideration of heat conduction, convection and radiation, and also reasonable boundary conditions. Simulation results show that the loss of eddy current accounts for 20% of the total loss, which indicates the eddy current is so significant that it can't be neglected. Then, the effect of the different position of the contact resistance on temperature rise is also studied. Simulation results show that when the contact resistance is close to the edge, the heat loss of the contact increases significantly due to the longer conductive path. The temperature of the contact near the edge grows significantly due to the skewed-slots coil structure of the axial magnetic field contact, which is unfavorable for the energy transfer through heat conduction. And because of the higher temperature at the edge, the temperature of other positions can also be increased.
机译:温度升高对于开关设备的正常操作非常关键,其中涡流和接触电阻是两个重要的影响因素。在本文中,首先,使用商业软件SolidWorks建立了一种12kV中压开关设备的主导电路模型。其次,考虑到热传导,对流和辐射,模拟涡流和接触电阻对开关设备温度升高的影响,以及合理的边界条件。仿真结果表明,涡流损失占总损失的20%,这表明涡流是如此重要的,即它不能被忽视。然后,还研究了接触电阻对温度升高的不同位置的影响。仿真结果表明,当接触电阻接近边缘时,由于导电路径较长,接触的热损失会显着增加。由于轴向磁场接触的偏斜槽线圈结构,边缘附近的触点的温度显着地增长,这是通过热传导的能量传递不利的。并且由于边缘温度较高,也可以增加其他位置的温度。

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