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Experimental study on lightning air terminal performance based on material type

机译:基于材料型雷电空气终端性能的试验研究

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Lightning air terminal is a main part of the external lightning protection system in the form of an upright rod conductor which has a construction in the formed side of lightning air terminal tapered shape as collector's static electric charge. The main parameters that determine both the deficient performance of a Franklin's lightning air terminals seen from the breakdown voltage level. This study discusses lightning air terminal based on material types. This research was conducted for 6 times experiments using lightning air terminals with 3 different type of material, namely copper, aluminum and galvanized iron (standard IEC 62305). The method used is testing the Lightning air terminals (LAT) based on different type of material using a high voltage DC negative polarity by adjusting the gap. Variables that are sought in the form of breakdown voltage and resistance of each lightning air terminals. The results from the study showed that the type of material from lightning air terminals affect the ability to deliver the lightning current to the ground as seen from the breakdown voltage level. The level of breakdown voltage for each material is different with the same gap. At a gap of 1 cm, test uses three types of materials testing of lightning air terminals, the probability of the type of material exposed to breakdown voltage on the types of copper by 100% with an average value of 8.23 KV breakdown voltage with 0.06 Ω resistance. Tests with two kinds of materials of lightning air terminal, the probability of the type of material exposed to breakdown voltage on the types of aluminum at 100% with an average value of breakdown voltage kV 8.48 with 0.08 Ω resistance. Testing with one type of material of lightning air terminal, the probability of the type of material exposed to breakdown voltage on the types of galvanized iron materials by 96.67% with an average value of breakdown voltage of 8.64 KV with 0.10 Ω resistance.
机译:闪电空气端子是外部雷电保护系统的主要部分,该系统的直立杆导体的形式具有闪电空气端子锥形形状的形成侧的结构,作为收集器的静电电荷。确定从击穿电压电平显示的富兰克林闪电空气端子的缺陷性能的主要参数。本研究讨论了基于材料类型的闪电空气终端。使用带有3种不同类型的材料的闪电空气端子进行了6次实验进行了该研究,即铜,铝和镀锌铁(标准IEC 62305)。使用的方法通过调节间隙来测试使用高压DC负极性的不同类型的材料测试闪电空气端子(LAT)。以击穿电压和每个闪电通道的电阻的形式寻求变量。研究结果表明,从击穿电压水平看,闪电空气端子的材料的类型影响将雷电输送到地面的能力。每个材料的击穿电压水平与相同的间隙不同。在1厘米的间隙下,测试使用三种类型的闪电空气端子测试,材料类型暴露于铜的击穿电压100×%,平均值为8.23kV击穿电压,0.06 ω电阻。用两种闪电空气端子测试,材料类型暴露于铝的击穿电压为100 %,具有0.08Ω电阻的击穿电压kV 8.48的平均值。用一种闪电空气端子进行测试,材料类型的概率暴露于镀锌铁材料类型的击穿电压96.67 %,平均值的击穿电压为8.64kV,电阻为0.10ΩkV。

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