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Electromagnetic-Thermal-Flow Field Coupling Simulation of 12-kV Medium-Voltage Switchgear

机译:12 kV中压开关柜的电磁热流场耦合仿真

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摘要

Long-term heating and excessive temperature rise will significantly affect the electrical and insulation performance of electric power equipment, causing the potential security risk. In this paper, the temperature rise situation under normal operation of a 12-kV medium voltage switchgear is studied through modeling and simulation method. First, in the simulation analysis of the whole switchgear, based on the theory of eddy-current field, gas flow field, and temperature field, the temperature rise distribution of the switchgear under the condition of natural convection and forced convection is simulated and analyzed. Then, several improvement methods are taken to reduce the temperature rise that emerges in the switchgear, including using spring contact finger structure to replace flexible connection structure, and also the optimization scheme of vacuum circuit breaker (VCB) pole and current transformer (CT). Then, simulation and research of different improvement schemes are conducted based on the electromagnetic-thermal-flow field coupling method. The simulation results of whole switchgear show that the above coupling method is very useful for the calculation of temperature rise. The simulation results also show that the spring contact structure is beneficial to reduce the temperature rise of vacuum interrupter and mechanical connection part. After the modification of design, the temperature rise conditions of the VCB pole and CT are significantly improved.
机译:长期加热和温度过高会严重影响电力设备的电气和绝缘性能,从而带来潜在的安全隐患。本文通过建模和仿真方法研究了12 kV中压开关柜正常运行时的温升情况。首先,在整个开关柜的仿真分析中,基于涡流场,气体流场和温度场的理论,对自然对流和强制对流条件下开关柜的温升分布进行了仿真分析。然后,采取了几种改善方法来减少开关柜中出现的温升,包括使用弹簧接触指结构代替柔性连接结构,以及真空断路器(VCB)极和电流互感器(CT)的优化方案。然后,基于电磁-热-流场耦合方法,对不同的改进方案进行了仿真和研究。整个开关柜的仿真结果表明,上述耦合方法对于温升的计算非常有用。仿真结果还表明,弹簧接触结构有利于减少真空灭弧室和机械连接部件的温升。设计修改后,VCB极和CT的温升条件得到了明显改善。

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