Highly Efficient Portable Lightning Strike Counter - Case Study of Its Implementation and Testing

J. Mikeš, P. Kovář
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Abstract

Safely conducting flowing lightning current into the grounding system via air-terminals and down-conductors constitutes a key method of protecting objects being struck by lightning discharge. At present, there is no other safer method of protection than capturing and conducting lightning current and its dispersion in the ground. By having to conduct powerful lightning current, the protection systems are exposed to excessive thermic and electrical stress. When such protection systems are correctly designed, installed and regularly checked, the threat to objects is considerably reduced as the systems are dimensioned for such purposes. An opposite case occurs when a protection system is damaged, most frequently due to the thermic effects of lightning current. Then, there are only two possibilities of detecting damage: either by providing regular and timely inspections or by means of controls based on the information supplied by a lightning strike counter. The key requirement of the first method is that the relevant object has not been repeatedly struck by lightning current during a period of at least 5 years. The other method provides instant information, in real time, and inspection of the protection system may be carried out immediately. Hence, sooner than another lightning stroke discharge could be repeated. This paper examines the method of detecting lightning current in down-conductor and the possibility of providing real-time information.
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高效便携式雷击计数器的实现与测试案例研究
将流动的雷击电流通过空端和下导线安全地导入接地系统是保护被雷击物体的关键方法。目前,没有比捕获和传导雷电电流及其在地面的分散更安全的保护方法。由于必须传导强大的雷电电流,保护系统暴露在过度的热和电应力下。当这种保护系统被正确设计、安装和定期检查时,对物体的威胁就会大大减少,因为系统的尺寸是为此目的而设计的。相反的情况发生在保护系统损坏时,最常见的是由于雷击电流的热效应。然后,只有两种可能的检测损害:要么通过提供定期和及时的检查,要么通过基于雷击计数器提供的信息的控制手段。第一种方法的关键要求是相关物体在至少5年内没有被雷击电流反复击中。另一种方法提供即时信息,实时地,可以立即对保护系统进行检查。因此,早于另一个雷击放电可以重复。本文探讨了探测下导体雷电电流的方法以及提供实时信息的可能性。
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