基于等效热电路和BOTDA的电力电缆导体温度计算与测量

Jing Zhou, Kai Yao, Xiaowei Huang, G. Sun, Weijia Zhang, Ahsan Ashtaq, Yi Hao, Yu Chen
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引用次数: 5

摘要

中国海南网系统500kV交流海底电缆是世界上最长、容量第二大的海底电缆,具有非常重要的政治和经济意义。通过对电缆表面温度的估算,可以计算出电缆内部导体的温度和额定电流容量。首先介绍了测试原理,即利用布里渊光时域反射计测试仪对电力电缆表面捆扎的光缆进行温度测试的原理。其次,设计了电力电缆额定电流实验。电源线绑扎在10m光缆的表面。BOTDA分布式温度测试仪安装在电源线两端,用于监控电源线表面温度,记录电源线表面温度,并指导电源线走线。利用电力电缆热循环测试系统对电力电缆进行加热,通过热电偶监测电缆导体的温度,钳形电流表监测导体的额定电流容量,改变通过变压器的调节值,记录电力电缆导体的温度和负载。最后,对这种光缆在电力电缆表面捆扎的方法进行了验证,为海底电缆温度监测提供了实验依据。
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Temperature Calculation and Measurement on Power Cable Conductor Based on Equivalent Thermal Circuit and BOTDA
China's Hainan network system 500kV AC submarine cable has the world's largest length and the second largest capacity in the world, with very important political and economic significance. The surface temperature of the power cable is estimated to calculate the internal conductor temperature and the current rating capacity. Firstly, the principle of testing is introduced, which is the principle of temperature testing of the optical cable bundled on the power cable surface using the Brillouin optical time domain reflectometer tester. Secondly, the power cable current rating experiment was designed. The power cable is bundled on the surface of the 10 meter optical cable. The BOTDA distributed temperature tester is attached to both ends of the power cable to monitor the power cable surface, record the surface temperature of the power cable, and route the power cable through cable heater. Use the power cable heat cycling test system to heat the power cable, the temperature of cable conductor is monitored by a thermocouple, and clamp current meter monitors the current rating capacity of the conductor, changes the regulation value of the through transformer, recording the temperature and load of the power cable conductor. Finally, this method of bundling the optical cable on the power cable surface was verified, which provided an experimental basis for submarine cable temperature monitoring.
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