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作 者:肖晓 程绳 陈思哲 周建 时伟君 张宇娇 姜岚[1] XIAO Xiao;CHENG Sheng;CHEN Sizhe;ZHOU Jian;SHI Weijun;ZHANG Yujiao;JIANG Lan(College of Electrical and New Energy,Three Gorges University,Yichang,Hubei 443002,China;State Grid Hubei Electric Power Company Maintenance Company,Wuhan 430050,China;School of Electrical and Automation Engineering,Hefei University of Technology,Hefei 230009,China)
机构地区:[1]三峡大学电气与新能源学院,湖北宜昌443002 [2]国网湖北省电力有限公司超高压公司,武汉430050 [3]合肥工业大学电气与自动化工程学院,合肥230009
出 处:《南方电网技术》2022年第7期101-107,115,共8页Southern Power System Technology
基 金:国家自然科学基金资助项目(52077048)。
摘 要:针对某500 kV变电站内邻近电抗器的电缆铠装层接地线出现异常发热的问题,建立了三相电抗器、电缆铠装层以及电缆终端模型,采用有限元数值计算方法对电缆接地线电流、电缆终端温度异常进行分析。接地线电流计算结果与实测值误差为1.8%,电缆终端最高温度计算结果与实测最高温度误差为3.6%,验证了计算模型的正确性。在此基础上,讨论了不同铺设方式下屏蔽体均对电缆线路接地线电流的影响以及屏蔽体的发热情况。结果表明,在三相电抗器底部铺设圆形和T形屏蔽体均能有效降低电缆接地线电流值,增加屏蔽体的面积能明显提高隔磁效果,且屏蔽体不会异常发热,可以安全使用。Aiming at the abnormal heating of the cable armoring layer grounding line adjacent to the reactor in a 500 kV substation, the models of three-phase reactor, cable armored layer and cable terminal are established, the finite element numerical calculation method is used to analyze the abnormal rise of cable grounding line current and cable terminal temperature. The error between the calculated and measured values of grounding line current is 1.8%, the error between the calculated and measured maximum cable terminal temperature is 3.6%, which verifies the correctness of the model and method, and on this basis, the effect of the magnetic shield on the grounding line current under different placement methods and the heat generation of the magnetic shield are discussed. The results show that laying round and T-shaped magnetic shield at the bottom of the three-phase reactor can effectively reduce the cable grounding current value, and the increase of the magnetic shield area can significantly improve the shielding effect, the magnetic shield will not produce abnormal heat and can be used safely.
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