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Earth grid safety criteria determination with the standards IEEE-80 and IEC-60479 and optimization of installation depth

机译:地球电网安全标准用IEEE-80和IEC-60479标准确定和安装深度的优化

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Major generating or switching stations are normally operated with their neutral points directly earthed (usually an earth grid is buried in the earth). Metallic structures in the yard of generating or switching station, are electrically connected to the earth grid. The dimensions of earth grids are usually up to some hundreds of meters on a side. The design of earthing systems requires a worst-case approach. It ensures that a conductor forming the grid will not fail thermally or mechanically in the worst case of maximum fault current persisting for a fault of maximum duration. Over the life time of the electrical substation and its associated earth grid (30-50 years), it is important to maintain safety. Therefore before installing an earth grid its design is assessed according to the earth grid installation standards. In this paper safety criteria assessment of a design is evaluated with both IEEE-80 and IEC- 60479. In addition, a new method for determining the earth grid's installation depth has been proposed. It is based upon the soil model of particular substation instead of installing it in 0.5 meters depth for any substation.
机译:主要产生或切换站通常用其中性点直接接地(通常,地球网格埋在地球)。生成或切换站码中的金属结构电连接到地球网格。地球栅格的尺寸通常在一侧高达数百米。接地系统的设计需要最糟糕的方法。它确保形成网格的导体不会在最大的最大故障电流持续到最大持续时间的故障的最坏情况下进行热或机械。在电气变电站的寿命和相关的地球网(30-50岁)中,保持安全性是很重要的。因此,在安装地球网格之前,根据地球电网安装标准评估其设计。在本文中,使用IEEE-80和IEC-60479评估设计的安全标准。此外,提出了一种确定地球电网安装深度的新方法。它基于特定变电站的土壤模型,而不是将其安装在0.5米深度以供任何变电站。

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