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首页> 外文期刊>電気学会論文誌 B:電力·エネルギー部門誌 >Experimental Study on Surge Propagation Characteristics of Rail and Lightning Overvoltages on Level Crossing
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Experimental Study on Surge Propagation Characteristics of Rail and Lightning Overvoltages on Level Crossing

机译:交叉口铁轨和雷电过电压浪涌传播特性的实验研究。

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摘要

Lightning protection measures are required for the railway signalling system because suspension and delays of trains due to lightnings may cause social confusion. Therefore, we carried out experiments on propagation characteristics of lightning surges along a rail, and injected a lightning surge current into the rail or wayside ground to raise their potentials, in order to measure the lightning overvoltages on a level crossing for the insulation design. There are no precedents that have carried out these experiments in the field until now. We could obtain the following results. (1) The surge impedance of the rail is 56Ω and the surge propagation velocity in the rail is 55 m/μs. (2) The surge attenuation depends only on the duration of wave tail of the traveling lightning surge along the rail and decreases as the duration of wave tail becomes longer. (3) Flashovers may occur at the terminals in the equipment of the level crossing in case 1) a 2 kA lightning surge current is directly injected into the rail, or 2) a 10 kA lightning surge current is injected into the wayside ground at a vertical distance of 2 m from the rail. (4) We can estimate the lightning overvoltages on the terminals in the equipment of the level crossing according to the vertical distance from the rail of the lighting stroke and the level of the stroke current.
机译:铁路信号系统需要采取防雷措施,因为由于雷电而导致的火车停驶和延误可能会引起社会混乱。因此,我们对雷电浪涌沿铁轨的传播特性进行了实验,并将雷电浪涌电流注入铁轨或路边地面以提高其电势,以测量用于绝缘设计的平交道口的雷电过电压。迄今为止,尚无在该领域进行这些实验的先例。我们可以获得以下结果。 (1)导轨的浪涌阻抗为56Ω,导轨中的浪涌传播速度为55 m /μs。 (2)浪涌衰减仅取决于沿轨道行进的雷电浪涌的波尾的持续时间,并且随着波尾的持续时间变长而减小。 (3)在以下情况下,可能会在标高交叉口的设备的端子处发生闪络:1)2 kA雷电浪涌电流直接注入轨道中,或者2)10 kA雷电浪涌电流注入到路边地面。与轨道的垂直距离为2 m。 (4)根据距雷击笔轨的垂直距离和雷击电流的大小,我们可以估计平交路口设备的端子上的雷电过电压。

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