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Electric field analysis of polymer insulators for various geometrical configurations

机译:各种几何构型的聚合物绝缘子的电场分析

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Present days, electrical field distribution is the region of major concern in the service life of polymeric Insulators. Numerous methodologies are suggested to analyze the electric field along the insulators both experimentally and numerically of which the former might be more time consuming, requiring a number of trial-error tests to decide the optimum dimensions. The dawn of super computers makes numerical analysis feasible on any intricate geometry. Insulators will degrade and fail due to the existence of higher electrical stresses. These electrical stresses can be minimized with change in the geometrical configurations of the insulator. Here in this paper, with the help of FEMM 2D software package 11kV and 33kV polymer insulators are designed and electric field distribution at different critical points is analyzed. The electric stresses are reduced with the change in the geometrical configurations mainly the size and shape of the insulator. Results are compared between the actual design of the insulator and the insulator with the change in the geometrical configurations. It is observed that the insulator with change in geometrical configurations gives better field results.
机译:如今,电场分布是聚合物绝缘子使用寿命中的主要问题。建议采用多种方法来对沿绝缘子的电场进行实验和数值分析,而前者可能更耗时,因此需要进行多次试错试验才能确定最佳尺寸。超级计算机的出现使数值分析在任何复杂的几何形状上都可行。绝缘体将由于存在较高的电应力而退化并发生故障。通过改变绝缘子的几何形状,可以将这些电应力减至最小。在本文中,借助FEMM 2D软件包,设计了11kV和33kV聚合物绝缘子,并分析了不同临界点的电场分布。电应力随着几何形状的变化而减小,主要是绝缘子的尺寸和形状的变化。比较了绝缘子的实际设计和随几何形状变化而变化的绝缘子的结果。可以看到,随着几何构型的变化,绝缘子的磁场效果更好。

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