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Contrastive analysis of transient potential of wind turbine onshore and offshore in lightning strokes

机译:雷击时陆上和海上风力发电机暂态电势的对比分析

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For the lack of systematic research of lightning protection design of the wind turbine, it is necessary for further study of the transient effect caused by lightning. Essentially, the process that lightning current flows through the turbine is a wave process. In this paper, wave-process theory is adopted when effect of wave process on the transient potential is analyzed. With the software ATP-EMTP, oscillation of transient potential throughout the wind turbine is simulated under various conditions, such as different tower body height, soil resistivity and size of the grounding device. The influence of various conditions on the frequency of oscillation is also studied. On this basis, an improved wave impedance model for the wind turbine offshore is put forward. Actually, parts of the wind turbine offshore located in different situations have different wave impedances. The multi-wave impedance model is divided into three segments. By applying this model, simulation of lightning hitting the wind turbine onshore and offshore is carried out. The transient potential at the top of the blade and the grounding device is analyzed. Through a comparative analysis, their respective characteristic is get. For the wind turbine onshore, the amplitude of transient potential oscillation is far larger, which may lead to more sever induced over-voltage. For the wind turbine offshore, the frequency of transient potential oscillation is far higher, which may cause more damage to the weak electricity system of the wind turbine. So there should be respective emphases against lightning strike for different types wind turbine, which would be a reference basis for lightning protection design of the wind turbine.
机译:由于缺乏对风机防雷设计的系统研究,因此有必要进一步研究雷电引起的暂态效应。本质上,雷电流流过涡轮机的过程是波动过程。在分析波动过程对瞬态电势的影响时,采用波动过程理论。使用ATP-EMTP软件,可以在各种条件下模拟整个风力涡轮机的瞬态电位振荡,例如不同的塔身高度,土壤电阻率和接地装置的尺寸。还研究了各种条件对振荡频率的影响。在此基础上,提出了一种改进的海上风机波阻抗模型。实际上,海上风力涡轮机的不同位置的部分具有不同的波阻抗。多波阻抗模型分为三个部分。通过应用该模型,进行了雷击海上和海上风力涡轮机的模拟。分析了叶片和接地装置顶部的瞬态电势。通过比较分析,得出它们各自的特性。对于陆上风力涡轮机,瞬态电势振荡的幅度要大得多,这可能导致更严重的感应过电压。对于海上风力涡轮机,瞬态电势振荡的频率要高得多,这可能对风力涡轮机的弱电系统造成更多损害。因此,应针对不同类型的风力发电机组分别提出防雷重点,这将为风力发电机组的防雷设计提供参考依据。

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