A Non-Invasive Temperature Measurement Method for High-Voltage Cable Core Based on Temperature Field Construction and Analysis
Du Lin1, Yu Huizong1, Yan Han2
1. State Key Laboratory of Power Transmission Equipment & System Security and New Technology Chongqing University Chongqing 400044 China; 2. Yunnan Power Dispatching and Control Center Kunming 650011 China
Abstract:In view of the traditional direct or indirect temperature measurement of cable, there are problems such as great influence by ambient temperature, poor measurement accuracy, and high application cost. A non-invasive temperature measurement for high-voltage single-core cables based on temperature field construction was proposed in this paper. The regional temperature field and gradient were constructed by partially wrapping the thermal insulation medium outside of the cable sheath. Relative temperature between each temperature in the thermal insulation layer and the ambient temperature was taken as the sensitive parameter of the temperature gradient relationship that can extract the temperature gradient law. The analytical calculation formula was derived, which can accomplish the indirect measurement of the steady-state temperature of the cable core by utilizing multi-point temperature outside the cable. The experimental results show that: The solution error of cable core temperature is below 3℃ by using the revised theoretical calculation formula and data fitting formula. The measurement method is economical and convenient, which can realize real-time measurement of the steady-state temperature of the cable core without destroying the cable body.
杜林, 余辉宗, 严涵. 基于构建温度场分析的非侵入式高压电缆缆芯温度测量方法[J]. 电工技术学报, 2021, 36(7): 1338-1346.
Du Lin, Yu Huizong, Yan Han. A Non-Invasive Temperature Measurement Method for High-Voltage Cable Core Based on Temperature Field Construction and Analysis. Transactions of China Electrotechnical Society, 2021, 36(7): 1338-1346.
[1] 王孟夏, 韩学山, 黄金鑫, 等. 计及电缆热特性的电热耦合潮流计算[J]. 电力系统自动化, 2016, 40(11): 73-79. Wang Mengxia, Han Xueshan, Huang Jinxin, et al.Electro-thermal power flow calculation considering thermal properties of cable[J]. Automation of Electric Power Systems, 2016, 40(11): 73-79. [2] 刘家军, 杜智亮, 李娟绒, 等. 铁路10kV电力电缆头发热分析与安全监测[J]. 电力系统保护与控制, 2019, 47(24): 131-138. Liu Jiajun, Du Zhiliang, Li Juanrong, et al.Thermal analysis and safety monitoring of railway 10kV power cable joints[J]. Power System Protection and Control, 2019, 47(24): 131-138. [3] 杜伯学, 韩晨磊, 李进, 等. 高压直流电缆聚乙烯绝缘材料研究现状[J]. 电工技术学报, 2019, 34(1): 179-191. Du Boxue, Han Chenlei, Li Jin, et al.Research status of polyethylene insulation for high voltage direct current cables[J]. Transactions of China Electrot-echnical Society, 2019, 34(1): 179-191. [4] 梁永春, 李彦明, 李延沐, 等. 地下电缆群暂态温度场和短时载流量数值计算方法[J]. 电工技术学报, 2009, 24(8): 34-38. Liang Yongchun, Li Yanming, Li Yanmu, et al.Numerical method to calculate the transient temperature field and short-term ampacity of underground cable system[J]. Transactions of China Electrotechnical Society, 2009, 24(8): 34-38. [5] 梁永春, 李彦明, 柴进爱, 等. 地下电缆群稳态温度场和载流量计算新方法[J]. 电工技术学报, 2007, 22(8): 185-190. Liang Yongchun, Li Yanming, Chai Jinai, et al.A new method to calculated the steady-state temperature field and ampacity of underground cable system[J]. Transactions of China Electrotechnical Society, 2007, 22(8): 185-190. [6] 彭超, 赵健康, 苗付贵. 分布式光纤测温技术在线监测[J]. 高电压技术, 2006, 32(8): 43-45. Peng Chao, Zhao Jiankang, Miao Fugui.Distributed temperature system applied in cable temperature measurement[J]. High Voltage Engineering, 2006, 32(8): 43-45. [7] 张洪麟. 基于有限元的地下电缆温度场和载流量的计算与仿真[D]. 重庆: 重庆大学, 2009: 7-9. [8] 林晨炯, 林珍, 吴雅琳. 电缆接头温度在线监测方法研究综述[J]. 电气技术, 2019, 20(5): 1-4, 9. Lin Chenjiong, Lin Zhen, Wu Yalin. Summary of research on online monitoring method of cable joint temperature[J]. Electrical Engineering, 2019, 20(5): 1-4, 9. [9] 魏占朋, 方静, 林国洲, 等. 内置测温光纤导致的高压电缆本体故障解析[J]. 山东电力技术, 2020, 47(4): 15-19. Wei Zhanpeng, Fang Jing, Lin Guozhou, et al.Analysis of high voltage cable fault caused by built-in temperature measuring optical fiber[J]. Shandong Electric Power, 2020, 47(4): 15-19. [10] 高云鹏, 谭甜源, 刘开培, 等. 电缆接头温度反演及故障诊断研究[J]. 高电压技术, 2016, 42(2): 535-542. Gao Yunpeng, Tan Tianyuan, Liu Kaipei, et al.Research on temperature retrieval and fault diagnosis of cable joint[J]. High Voltage Engineering, 2016, 42(2): 535-542. [11] 赵建华, 袁宏永, 范维澄, 等. 基于表面温度场的电缆缆芯温度在线诊断研究[J]. 中国电机工程学报, 1999, 19(11): 3-5. Zhao Jianhua, Yuan Hongyong, Fan Weicheng, et al.Surface temperature field based on line diagnoses study for electric cable’s conductor temperature[J]. Proceeding of the CSEE, 1999, 19(11): 3-5. [12] 段佳冰, 尹成群, 吕安强, 等. 基于IEC-60287和有限元法的高压海底电缆温度场分析方法[J]. 高电压技术, 2014, 50(1): 1-6. Duan Jiabing, Yin Chengqun, Lü Anqiang, et al.Analysis method for temperature of high voltage submarine cable based on IEC-60287 and finite element[J]. High Voltage Engineering, 2014, 50(1): 1-6. [13] Choo W, Chen G, Swingler S G.Electric field in polymeric cable due to space charge accumulation under DC temperature[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 2011, 18(2): 596-606. [14] 曹惠玲, 王增强, 李雯婧, 等. 坐标组合法对直埋电缆与土壤界面温度场的数值计算[J]. 电工技术学报, 2003, 18(3): 59-63. Cao Huiling, Wang Zengqiang, Li Wenjing, et al.Numerical computation of temperature distribution of underground cables and soil with combinatorial coordinates[J]. Transactions of China Electrotechnical Society, 2003, 18(3): 59-63. [15] 苏文, 宋建成, 许春雨, 等. 10kV MYPTJ型矿用电缆缆芯动态温度监测方法[J]. 高压电器, 2015, 51(2): 57-62. Su Wen, Song Jiancheng, Xu Chunyu, et al.Method for monitoring dynamic temperature of 10kV MYPTJ mining cable core[J]. High Voltage Apparatus, 2015, 51(2): 57-62. [16] 胡剑, 熊小伏, 王建. 基于热网络模型的架空输电线路径向和周向温度计算方法[J]. 电工技术学报, 2019, 34(1): 139-152. Hu Jian, Xiong Xiaofu, Wang Jian. Radial and circumferential temperature calculation method of overhead transmission lines based on thermal network model[J]. Transactions of China Electrotechnical Society, 2019, 34(1): 139-152. [17] 王有元, 陈仁刚, 陈伟根. 有限元法计算地下电缆稳态温度场及其影响因素[J]. 高电压技术, 2009, 35(12): 3086-3092. Wang Youyuan, Chen Rengang, Chen Weigen. Calculation of static temperature field of buried cable based on FEM and analysis of influential factors[J]. High Voltage Engineering, 2009, 35(12): 3086-3092. [18] 李永建, 闫鑫笑, 张长庚, 等. 基于磁-热-流耦合模型的变压器损耗计算和热点预测[J]. 电工技术学报, 2020, 35(21): 4483-4491. Li Yongjian, Yan Xinxiao, Zhang Changgeng, et al.Numerical prediction of losses and local overheating in transformer windings based on magnetic-thermal-fluid model[J]. Transactions of China Electrotechnical Society, 2020, 35(21): 4483-4491. [19] 王鹤, 李兴宝, 路俊海, 等. 基于叠加原理的光纤复合低压电缆热路模型建模[J]. 电工技术学报, 2019, 34(7): 1381-1391. Wang He, Li Xingbao, Lu Junhai, et al.Modeling method of OPLC thermal circuit model based on superposition principle[J]. Transactions of China Electrotechnical Society, 2019, 34(7): 1381-1391. [20] 刘刚, 雷鸣, 阮班义, 等. 考虑轴向传热的单芯电缆缆芯温度实时计算模型研究[J]. 高电压技术, 2012, 38(8): 1877-1883. Liu Gang, Lei Ming, Ruan Banyi, et al.Model research of real-time calculation for single-core cable temperature considering axial heat transfer[J]. High Voltage Engineering, 2012, 38(8): 1877-1883. [21] 周蠡, 彭迎, 李靖, 等. 基于反演的电力电缆缆芯温度间接测量研究[J]. 三峡大学学报(自然科学版), 2018, 40(2): 66-71. Zhou Li, Peng Ying, Li Jing, et al.Research on indirect measurement method of cable conductor temperature through temperature retrieval[J]. Journal of China Three Gorges University(Natural Sciences), 2018, 40(2): 66-71. [22] Zhu Gaojia, Liu Xiaoming, Li Longnü, et al.Coupled electromagnetic-thermal-fluidic analysis of permanent magnet synchronous machines with a modified model[J].CES Transactions on Electrical Machines and Systems, 2019, 3(2): 596-606. [23] 邓世聪, 胡冉, 叶文忠. 基于内置导体温度测量的配网电缆状态评价技术[J]. 高电压技术, 2020, 46(12): 4430-4434. Deng Shicong, Hu Ran, Ye Wenzhong. State evaluation technology of distribution network cable based on internal conductor temperature measurement[J]. High Voltage Engineering, 2020, 46(12): 4430-4434. [24] 刘刚, 王鹏宇, 毛健琨, 等. 高压电缆接头温度场分布的仿真计算[J]. 高电压技术, 2018, 44(11): 3688-3698. Liu Gang, Wang Pengyu, Mao Jiankun, et al.Simulation calculation of temperature field distribution in high voltage cable joints[J]. High Voltage Engineering, 2018, 44(11): 3688-3698.