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A New Method for Calculating Earth Electrode Length for a Wind Turbine Generator Grounding System based on a Two-Layer Soil Structure

机译:基于两层土壤结构的风力发电机接地系统接地极长度计算的新方法

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The earthing system is a crucial component of the lightning protection system in a wind turbine generator. In particular, the length of the earth electrodes has a significant role in the wind turbine earthing resistance value. The state of the art standard IEC 61400-24 provides guidance on the design of the earthing system. However, this method assumes uniform soil resistivity. This paper proposes a more accurate method to calculate the minimum length of the earth electrode for a two-layer soil model considering electrode dimension, burying depth and frequency. The proposed method is implemented for measured values of soil resistivity for three wind turbine sites and compared to results from traditional methods. We found that using the proposed method results in a decrease in the lightning generated ground potential rise of up to 64% compared to the conventional method.
机译:接地系统是风力发电机中防雷系统的重要组成部分。特别地,接地电极的长度在风力涡轮机的接地电阻值中具有重要作用。最新的IEC 61400-24标准为接地系统的设计提供了指导。但是,该方法假定土壤电阻率均匀。本文针对两层土壤模型,提出了一种考虑电极尺寸,埋深和频率的更准确的接地电极最小长度方法。所提出的方法适用于三个风力涡轮机站点的土壤电阻率测量值,并与传统方法的结果进行了比较。我们发现,与传统方法相比,使用所提出的方法可减少高达64%的雷电产生的地电位上升。

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