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Responses of Airport Runway Lighting System to Direct Lightning Strikes: Comparisons of TLM Predictions With Experimental Data

机译:机场跑道照明系统对直接雷击的响应:TLM预测与实验数据的比较

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A test airport runway lighting system, including a buried cable protected by a counterpoise and vertical ground rods, was subjected to direct lightning strikes, and currents and voltages measured in different parts of the system were reported earlier by Bejleri In this paper, we attempt to model the lightning interaction with this system using the transmission line theory. Lumped devices along the cable such as current regulator and transformers are ignored; possible nonlinear phenomena (arcing) in the system are neglected; the soil is assumed to be homogeneous. The model-predicted currents in the counterpoise, ground rod, and the cable are compared with the measurements, and a reasonable agreement was found for the currents along the counterpoise. It is found that current in the counterpoise is not much influenced by the presence of the cable. Further, vertical ground rods connected to the counterpoise do not have significant influence on the current distribution along the counterpoise. It appears that the model is unable to predict cable currents and voltages in the test system, presumably due to neglecting nonlinear phenomena in the soil and in cable''s insulation and electromagnetic coupling with the lightning channel.
机译:测试的机场跑道照明系统(包括由地磅和垂直接地棒保护的埋入式电缆)遭受了直接的雷击,并且Bejleri早些时候报告了系统不同部分中测量的电流和电压。在本文中,我们试图使用传输线理论对该系统的雷电相互作用进行建模。电缆上的集总设备(例如电流调节器和变压器)将被忽略;忽略了系统中可能出现的非线性现象(电弧);假定土壤是均匀的。将模型预测的平衡锤,接地棒和电缆中的电流与测量值进行比较,发现沿着平衡锤的电流有合理的一致性。已经发现,电缆的存在对地网中的电流影响不大。此外,连接到平衡锤的垂直接地棒对沿平衡锤的电流分布没有重大影响。似乎该模型无法预测测试系统中的电缆电流和电压,这可能是由于忽略了土壤和电缆的绝缘以及与雷电通道的电磁耦合中的非线性现象。

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