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Study of electrical field and micro arcing in a wooden supporting structure using Finite Element Method

机译:用有限元方法研究木质支撑结构中的电场和微电弧

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摘要

The power distribution and transmission networks in many countries use wood for fabricating service poles for the overhead power lines. In this paper, we model a wooden pole used in an 11kV three phase distribution system. We use this model to study the electric fields induced in the wooden supporting structures, in order to determine the possibility of micro arcing inside them, using Finite Element Analysis. The three dimensional model takes into consideration both the resistive and capacitive properties, and closely resembles the actual pole. We show that the electric field distribution of the utility pole changes significantly with the change of weather conditions, and the size of the air gap at the wood-metal interface where the electric field is at its maximum. Also, we show that the electric field in this gap can be reduced significantly by modifying the king bolt using an epoxy coating. This reduction will minimize the chance of micro arcing inside the air gap near the bolt, which will reduce the long term degradation of the wooden structure.
机译:许多国家/地区的配电和传输网络使用木材来制造架空电线的服务杆。在本文中,我们为11kV三相配电系统中使用的木杆建模。我们使用此模型来研究木制支撑结构中感应的电场,以便使用有限元分析确定其中的微弧的可能性。三维模型同时考虑了电阻和电容特性,并且非常类似于实际的极点。我们发现,电线杆的电场分布随着天气条件的变化以及电场最大的木材-金属界面处气隙的大小而发生显着变化。同样,我们表明,通过使用环氧树脂涂层修改国王螺栓,可以显着降低该间隙中的电场。这种减少将使螺栓附近的气隙内部微电弧的机会降到最低,这将减少木结构的长期退化。

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