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Investigation of simple graded permittivity solid spacer shape by electrode modification on gas insulated switchgear

机译:气体绝缘开关装置电极改性简易分级介质固体间隔物形状的研究

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It was investigated and proved that the Functionally Graded Material (FGM) as an insulation material for high voltage applications are able to relax the electric field concentration around the high voltage electrode and along the gas-insulator surface. Based on the previous numerical analysis, it was proved that the FGM spacer, which permittivity has gradually changed, with the modification of a spacer configuration by the Design of Experiment (DOE) showed considerable maximum electric field reduction in comparison with a conventional spacer which has uniform permittivity. However, it is hard to apply a gradual permittivity variation in the FGM spacer for a real product processing due to its complicated shape. Thus, through this paper, it is proceeded to change the electrode shape in the gas insulated switchgear in order to increase the possibility of real FGM insulator manufacturing. To achieve the goal, the optimization processes are used to modify the both shape of electrode and FGM spacer on a commercial gas insulated switchgear configuration. Consequently, the insulation capability of the switchgear with the optimally designed FGM spacer can be efficiently improved.
机译:研究了并证明了具有用于高压应用的绝缘材料的功能梯度材料(FGM)能够沿着高压电极和沿气体绝缘体表面放宽电场浓度。基于先前的数值分析,证明了FGM间隔物,介电常数逐渐改变,通过实验(DOE)的设计进行了改进的间隔结构,显示了与具有传统间隔物相比的最大电场降低均匀介电常数。然而,由于其复杂的形状,难以在FGM间隔物中施加逐渐介电常变化以进行实际产品处理。因此,通过本文,继续改变气体绝缘开关装置中的电极形状,以增加真实FGM绝缘子制造的可能性。为了实现目标,优化过程用于在商用气体绝缘开关设备上修改电极和FGM间隔的两种形状。因此,可以有效地改善具有最佳设计的FGM间隔物的开关设备的绝缘能力。

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