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Study on the Formation of the Electric Field around Three-phase Insulators in 110kV Transmission Tower and Its Influence on Flashover Voltage

机译:110kV输电塔三相绝缘子周围电场的形成及其对击穿电压的影响研究。

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The electric field distribution around the insulator is the main influencing factor of its flashover characteristics. And the electric field distribution of the insulator is affected by the external tower structure and connecting parts. Therefore, there are differences in electric field distribution of the insulators with different tower structures. And the insulator flashover characteristics vary depending on the tower structure and the suspension position of the insulators. In order to study the effect of tower structure on the electric field distribution around the insulator and its effect on flashover voltage, based on COMSOL Multiphysics, the finite element simulations on the electric field distributions around the composite three-phase insulators suspended on the umbrella-shape the drum-shape towers were conducted in this paper. The formation of the electric field distribution around the insulator suspended in the tower and the influence of the tower structure on its electric field distribution were analyzed. In addition, the flashover characteristics test of the composite insulator in the 110kV transmission line at high altitude area was carried out. The test was under a standard lightning impulse voltage of 1.2/50μs. Combined with the test results, the relationship between the 50% impulse discharge voltage of the three-phase insulators suspended in the tower and the uneven coefficient of electric field is further analyzed and verified.
机译:绝缘子周围的电场分布是其闪络特性的主要影响因素。绝缘子的电场分布受塔架外部结构和连接部件的影响。因此,具有不同塔架结构的绝缘子的电场分布存在差异。并且绝缘子的闪络特性根据塔架结构和绝缘子的悬挂位置而变化。为了研究塔架结构对绝缘子周围电场分布的影响及其对击穿电压的影响,基于COMSOL Multiphysics,悬架在伞上的复合三相绝缘子周围电场分布的有限元模拟如下:鼓形塔的形状在本文中进行。分析了悬挂在塔架中的绝缘子周围的电场分布的形成以及塔架结构对其电场分布的影响。另外,还进行了高海拔地区110kV输电线路复合绝缘子的闪络特性测试。该测试是在1.2 /50μs的标准雷电冲击电压下进行的。结合测试结果,进一步分析和验证了悬挂在塔架中的三相绝缘子的50%脉冲放电电压与电场不均匀系数之间的关系。

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