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Effect of Shield Wires on the Lightning-Induced Currents on Buried Cables

机译:屏蔽线对埋地电缆雷电感应电流的影响

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The effect of a shield wire, which is a bare conductor buried above an insulated metallic cable, on lightning-induced currents on the cable has been studied using the three-dimensional (3-D) finite-difference time-domain (FDTD) method. In the 3-D FDTD model, a 1-km-long insulated cable is buried at depth 0.6 m in 1850-Ω·m ground, and a 1-km-long shield wire is installed 0.3 m above the cable (at the depth 0.3 m from the ground surface). A 1-km-long vertical lightning return-stroke channel, attached to a 30-m-high tower or flat ground, is located 25 m away from the cable and the shield wire. The validity of this model has been shown by comparing the FDTD-computed lightning-associated currents on the cable and the shield wire with the corresponding measured currents associated with rocket-triggered lightning. The FDTD-computed results show that the presence of the shield wire reduces the induced current on the cable and the voltage across the outer insulation layer of the cable, as expected, but the series resistance of the shield wire has a negligible effect on this reduction. The presence of 30-m-high strike object slightly reduces the cable current. The ground permittivity and the return-stroke speed have negligible effects on the cable current, but the higher the ground resistivity, the higher is the cable current. The increase of bonding points between the cable sheath and the shield wire increases the cable current, but decreases the voltage across the outer insulation layer of the cable.
机译:已使用三维(3-D)有限差分时域(FDTD)方法研究了屏蔽线(屏蔽导体是埋在绝缘金属电缆上方的裸露导体)对电缆上的雷电感应电流的影响。在3-D FDTD模型中,将1公里长的绝缘电缆埋入1850-Ω·m地面中0.6米处的深度中,并将1公里长的屏蔽线安装在电缆上方0.3米处(在该深度处离地面0.3米)。与电缆和屏蔽线相距25 m的地方是一条1公里长的垂直雷击回程通道,该通道与30米高的塔楼或平坦地面相连。通过将电缆和屏蔽线上的FDTD计算的雷电相关电流与与火箭触发的雷电相关的相应测得的电流进行比较,可以证明该模型的有效性。 FDTD计算的结果表明,屏蔽线的存在降低了电缆上的感应电流,并降低了电缆外部绝缘层上的电压,正如预期的那样,但是屏蔽线的串联电阻对这种降低的影响可忽略不计。 30 m高的撞击物体的存在会稍微降低电缆电流。接地电容率和回程速度对电缆电流的影响可以忽略不计,但是接地电阻率越高,电缆电流就越高。电缆护套和屏蔽线之间连接点的增加会增加电缆电流,但会降低电缆外部绝缘层上的电压。

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