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Study of leakage current distribution in a wooden pole using a three dimensional resistance model

机译:使用三维电阻模型研究木杆中的泄漏电流分布

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The distribution and transmission networks are two vital components of a reliable power system. When considering these networks, many countries use wood for fabricating service poles for the overhead power lines. A main disadvantage of using wooden poles is the formation of pole top fires, which initiates catastrophic events such as bushfires. This paper studies the leakage current distribution of a wooden pole which contains an inserted king bolt used to support the cross arm. A three dimensional resistance model is built up based on the electrical ladder network, and the leakage current is simulated for different scenarios that could occur in practice. The analysis show that a large part of the leakage current passes through the heartwood to the ground, except in the area of the metal bolt. This current increases at high moisture contents making the pole vulnerable to fire. The location of the bolt affects the leakage current as well, and the current reduces when the location of the bolt is varied along the length of the pole from top to bottom. The results also show that this model is superior to a two dimensional model, with a clear deviation in the actual current flow patterns.
机译:配电和传输网络是可靠的电力系统的两个重要组成部分。在考虑这些网络时,许多国家/地区都使用木材来制造架空电力线的服务杆。使用木杆的主要缺点是会形成杆顶火,从而引发灾难性事件,例如丛林大火。本文研究了木杆的泄漏电流分布,该木杆包含用于支撑横臂的插入式国王螺栓。基于电气梯形网络建立了三维电阻模型,并针对实际中可能发生的不同情况模拟了泄漏电流。分析表明,除了金属螺栓的区域外,大部分泄漏电流都通过心材流到地面。该电流在高水分含量时会增加,使磁极容易着火。螺栓的位置也会影响泄漏电流,并且当螺栓的位置沿磁极的长度从上到下变化时,电流会减小。结果还表明,该模型优于二维模型,实际电流模式存在明显偏差。

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