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1.国网四川省电力公司经济技术研究院,成都 610041
2.国网四川省电力公司,成都 610041
3.西南交通大学电气工程学院,成都 610031
范荣全(1966—),男,硕士研究生,教授级高级工程师,研究方向为柔性输电、智能电网、设备在线监测、电网防灾减灾、新型电力系统等方面的科学理论和工程应用。
陈荣飞(1999—),男,硕士研究生,研究方向为高电压与绝缘技术(E-mail:3071840043@qq.com)。
纸质出版日期:
移动端阅览
范荣全, 曾文慧, 邹斌, 等. 电缆—GIL混合系统负载侧短路故障电压分布特性研究[J/OL]. 高压电器, 2025,1-11.
FAN Rongquan, ZENG Wenhui, ZOU Bin, et al. Characterization of Short-circuit Fault Voltage Distribution on Load Side of Cable-GIL Hybrid System[J/OL]. High voltage apparatus, 2025, 1-11.
为满足四川地区清洁能源大规模外送的要求,现拟采用隧道输电方式新建一条电缆—GIL混合输电线路。隧道输电方式无法降低负载侧发生故障的风险,当混合输电系统负载侧发生短路故障时,其电压分布不同于正常输电线路。为明晰故障对混合输电线路电压分布的影响,利用EMTP-ATP建立了混合输电模型,在负载侧设置了不同类型的短路故障。当故障发生瞬间电缆护套会产生一个幅值极大的感应过电压,越接近故障位置其电压峰值越大,而随后的稳态峰值电压基本保持稳定;GIL导体的非故障相电压相比与正常运行时下降,故障相电压也呈现越靠近故障处波动越大的趋势。为混合输电系统的安全防护提供了参考。
In order to meet the requirements of large-scale transmission of clean energy in Sichuan
a new cable-GIL hybrid transmission line is proposed to be built using tunnel transmission. The tunnel transmission method cannot reduce the risk of load-side faults
and when a short-circuit fault occurs on the load side of the hybrid transmission system
its voltage distribution is different from that of a normal transmission line. In order to clarify the effect of faults on the voltage distribution of the hybrid transmission line
a hybrid transmission model is established using EMTP-ATP
and different types of short-circuit faults are set up on the load side. When a fault occurs
the cable sheath generates an induced overvoltage with a great amplitude
and the closer to the fault location
the greater the peak voltage
while the subsequent steady-state peak voltage remains basically stable; the non-fault phase voltage of the GIL conductor decreases in comparison with the normal operation
and the fault phase voltage shows a trend of greater fluctuation the closer it is to the fault location. It provides a reference for the safety protection of hybrid transmission system.
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