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首页> 外文期刊>IEEE Transactions on Electromagnetic Compatibility >Induced Voltages on Overhead Line by Return Strokes to Grounded Wind Tower Considering Horizontally Stratified Ground
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Induced Voltages on Overhead Line by Return Strokes to Grounded Wind Tower Considering Horizontally Stratified Ground

机译:考虑水平分层接地的回风到接地风塔的架空线上感应电压

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Wind power plants are one of the most widespread sources of electric energy during the last few decades. Wind towers are quite often exposed to lightning strikes due to their tall height and long blades. In this paper, the lightning-induced voltages (LIVs) on a three-phase overhead line are computed for both first and subsequent strokes to a nearby grounded wind tower using the three-dimensional finite-difference time-domain method with homogeneous and horizontally stratified grounds. The horizontal electric fields are computed on the line and on the ground surface considering the transient grounding and characteristic impedances of the struck wind tower. The impact of the existence of wind tower on LIVs and horizontal electric fields is illustrated by removing the tower (i.e., return stroke to the ground surface). Finally, the influence of ground permittivity on the peak values of LIVs is investigated.
机译:在过去的几十年中,风力发电厂是最广泛的电能来源之一。风塔由于高度高,叶片长而经常遭受雷击。在本文中,使用三维有限差分时域方法,采用均质且水平分层的方法,计算了到附近接地风塔的第一和后续冲程的三相架空线上的雷电感应电压(LIV)理由。考虑到风电塔的瞬态接地和特征阻抗,在线路和地面上计算水平电场。风塔的存在对LIV和水平电场的影响通过移除风塔(即返回地面的行程)来说明。最后,研究了地面电容率对LIVs峰值的影响。

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