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Flashover Characteristics Along the Epoxy Resin Insulator under DC Voltage in SF6 Gas

机译:直流电压下SF6气体中环氧树脂绝缘子的闪络特性

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In order to promote the flexibility about the selection of transmission corridor, DC gas insulated transmission line (GIL) can be utilized to substitute part of the overhead line or cable in special environment. Key factors that greatly threaten the insulation level of GIL are surface charge accumulation along the insulator surface and electric field distortion under DC voltage. In this paper, the cone-plane electrode assembly has been established to simulate the electric field distribution of the coaxial cylindrical configuration in GIL. Key factors that affect the insulator's flashover characteristics in SF6 gas under DC voltage are investigated mainly from the view of the filler and geometry of epoxy resin insulators. Results show that among epoxy resin insulators with no filler, alumina and silica, surface dielectric strength of silica filled insulators is the most excellent in both short-term flashover and long-term withstand voltage tests. Also, the attention points in optimizing cone-plane electrode assembly based epoxy resin insulator for DC GIL and the method to approximately acquire charging time constant of insulator have been put forward.
机译:为了提高传输通道选择的灵活性,在特殊环境下,可使用直流气体绝缘传输线(GIL)代替部分架空线或电缆。严重威胁GIL绝缘水平的关键因素是沿绝缘子表面的表面电荷积累和直流电压下的电场失真。在本文中,已经建立了锥面电极组件以模拟GIL中同轴圆柱结构的电场分布。主要从环氧树脂绝缘子的填充物和几何形状的角度研究了影响直流电压下SF6气体中绝缘子闪络特性的关键因素。结果表明,在无填料,氧化铝和二氧化硅的环氧树脂绝缘子中,填充硅石的绝缘子的表面介电强度在短期闪络和长期耐压测试中均表现最佳。此外,提出了优化基于锥面电极组件的DC GIL用环氧树脂绝缘子的注意点和近似获取绝缘子充电时间常数的方法。

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