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Evaluation of Wind Turbine Earthing System

机译:风力发电机接地系统评估

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The majority of the wind farms are constructed in high altitudes and isolated areas which put in risk the wind turbines due to their exposure to lightning activity and their high total height. Wind turbine earthing system is part of its lightning protection design according to IEC61400-24 and shall ensure a safe path for the lightning current hitting the wind turbine and a safe working environment for the live beings. The earthing system contributes also in earth fault current dissipation and is considered in the electrical studies. In the current paper, the performance of a wind turbine earthing system of an existing wind farm with medium soil resistivity is discussed, based on simulations in ATP-EMTP which is suitable for steady-state and transient studies. Two cases (Case A and Case B) were examined relatively to the lightning current, i.e. 5 kA and 150 kA for the same concrete and soil resistivity, applied at the base and the top of the tower, respectively. In Case A, two occasions were considered by using or not an extra vertical rod placed at the base of the tower. In Case B, two scenarios were assumed by considering or not the ionization effect. It was noticed the reduction of the voltages and currents, when the ionization effect was regarded. The results can be used to evaluate the earthing system performance and the need for improvement to ensure a reliable operation of the whole asset mitigating the operational risk for the equipment.
机译:大多数风力发电场都建在高海拔地区和偏远地区,由于它们暴露在雷电中并且总高度很高,这使风力涡轮机处于危险之中。风力发电机接地系统是其根据IEC61400-24的防雷设计的一部分,应确保雷电流流到风力发电机上的安全路径以及生物的安全工作环境。接地系统也有助于接地故障电流的耗散,并在电气研究中得到了考虑。在当前论文中,基于适用于稳态和瞬态研究的ATP-EMTP中的模拟,讨论了具有中等土壤电阻率的现有风电场的风力发电机接地系统的性能。相对于雷电流,检查了两种情况(情况A和情况B),即分别在塔的底部和顶部施加相同的混凝土和土壤电阻率的情况下分别为5 kA和150 kA。在案例A中,考虑了两次使用或不使用放置在塔架底部的垂直杆的情况。在情况B中,通过考虑或不考虑电离效应假定了两种情况。当考虑到电离效应时,注意到电压和电流的减小。结果可用于评估接地系统的性能以及改进的需要,以确保整个资产的可靠运行,从而减轻设备的运行风险。

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