高土壤电阻率条件下大型电厂控制系统的地电位上升和雷电过电压

M. Lehtonen, M. Pichler, R. Schürhuber
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引用次数: 2

摘要

发电厂有时建在具有高土壤电阻率的大块基岩上,因此往往导致不太有利的接地条件。虽然电力系统频率应用的接地可以通过大电极面积来实现,但雷击通常影响较小的区域,但影响较大。因此,适合电力系统频率的接地系统不一定能够很好地处理暂态现象。当大雷击浪涌通过接地系统传播时,地电位上升是一种关键情况。接地系统不同部分的电位差可能会损坏所连接的线路和设备,这取决于接地的连接方式。新设施可以配备适当的设备,但现有的核电站,尤其是那些需要经过详细审批程序的核电站,往往不能轻易改造。本文从系统的角度评估了雷电对具有不同雷涌传播特性的接地系统的影响,最后提出了如何适当提高控制设备暂态保护的各种解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ground Potential Rise and Lightning Overvoltages in Control Systems of Large Power-Plants under High Soil Resistivity
Power-plants are sometimes built on massive bedrock with high soil resistivity thereby often resulting in less favorable grounding conditions. While grounding for applications with power system frequency can be achieved with large electrode areas, lightning strokes usually affect smaller areas with heavier impact. As a consequence a grounding system suitable for power system frequency is not necessarily capable of handling transient phenomena sufficiently well. A critical case is the ground potential rise when a large lightning surge propagates through the grounding system. The potential differences in different parts of grounding system may damage the connected wiring and equipment, depending on how grounding connections are made. New installations can be equipped with proper equipment but existing plants, especially those subject to detailed approval processes such as nuclear power-plants, often can't be modified easily. This paper evaluates the impact of lightning on a grounding system with different lightning surge propagation properties and finally presents a variety of solutions how to properly improve the transient protection for control equipment from a system point of view.
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