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Analysis on misoperation of gas relay caused by oil replenishment of on load tap changer with load |
QIAO Shengya, ZHOU Hongling, ZHU Chen, YANG Sen, LI Guangmao |
Electric Power Test and Research Institute of Guangzhou Power Supply Bureau, Guangzhou 510410 |
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Abstract In this paper, taking a misoperation accident of gas relay caused by oil replenishment of on load tap changer under live working condition of 220kV transformer as an example, through computational fluid dynamics (CFD) numerical simulation, the internal oil flow characteristics of on load tap changer during live/power-off oil replenishment process are compared, and it is concluded that the cause of gas protection misoperation is that the temperature of oil replenishment under live condition is higher than that under power-off condition. The influences of different oil temperature, different oil temperature inside the switch, and sudden closing of the oil makeup valve on the flow rate of the gas relay are analyzed. The results show that the oil temperature inside the oil makeup has a great influence on the steady-state average speed of the gas relay, while the oil temperature inside the on load tap changer has a great influence on the maximum average speed. At the same time, the sudden closing of the valve during the oil makeup process will not cause the misoperation of the gas relay. Finally, some suggestions are put forward for the live oil replenishment of on load tap changer.
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Received: 07 June 2022
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Cite this article: |
QIAO Shengya,ZHOU Hongling,ZHU Chen等. Analysis on misoperation of gas relay caused by oil replenishment of on load tap changer with load[J]. Electrical Engineering, 2022, 23(10): 86-90.
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URL: |
http://dqjs.cesmedia.cn/EN/Y2022/V23/I10/86
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[1] 王蕾, 袁洪跃, 王季琴, 等. 变压器有载分接开关技术和故障诊断发展现状及展望[J]. 高压电器, 2022, 58(3): 171-180. [2] 李小娣, 柴斌, 雷战斐. 一起换流变压器分接开关档位不一致原因分析及改进措施[J]. 电气技术, 2021, 22(8): 69-72. [3] 曹宏. 基于时频特征分析的变压器有载分接开关运行状态识别[J]. 高压电器, 2020, 56(4): 215-221. [4] 孙京阳, 王南, 于在明, 等. 大型变压器胶囊式储油柜和隔膜式储油柜对比研究[J]. 东北电力技术, 2021, 42(6): 23-26, 40. [5] 张如山. 变压器真空注油油位自动控制装置的研制[D]. 青岛: 青岛大学, 2016. [6] 李雷, 王俊波, 徐鑫, 等. 防止紧凑型变压器重瓦斯误动作的仿真研究[J]. 高压电器, 2017, 53(9): 186-191, 197. [7] 吴嘉竣. 500kV变电站主变重瓦斯误动作情况分析及改进措施研究[D]. 广州: 华南理工大学, 2019. [8] 张云峰. 变压器瓦斯保护误动原因分析及应对措施[J]. 电网技术, 2008, 32(增刊2): 300-302. [9] 姜海波, 闰兴龙, 孙亮, 等. 油浸式平波电抗器重瓦斯保护误动分析及防治措施[J]. 高压电器, 2015, 51(12): 201-205. [10] 丁国成, 甄超, 陈庆涛, 等. 大容量变压器用国产有载开关重瓦斯整定值试验研究[J]. 变压器, 2016, 53(3): 58-59. [11] 刘旸, 周志强. 变压器有载开关气体继电器误动的试验模拟研究[J]. 变压器, 2015, 52(6): 72-73. [12] 兰昊, 张思青, 于凤荣, 等. 基于CFD对BF型双浮球瓦斯继电器油流整定值的校验[J]. 中国电力, 2016, 49(增刊1): 1-5. [13] 兰昊. 基于CFD的瓦斯继电器流场理论研究[D]. 昆明: 昆明理工大学, 2017. [14] 李胜男, 冯加奇, 孟庆民, 等. 气体继电器在大型变压器油流场中仿真分析研究[J]. 变压器, 2016, 53(6): 35-39. [15] 江丹宇, 孟源源, 杨贤, 等. 基于多物理场耦合的变压器内部油流特性分析[J]. 变压器, 2020, 57(8): 23-28. [16] 饶章权, 许鸿翔, 杨贤, 等. 外部故障下油浸式变压器内部流场建模与分析[J]. 南方电网技术, 2017, 11(4): 45-51. [17] 周丹, 李正圆, 孙文星, 等. 外部短路冲击下瓦斯保护动作性能研究[J]. 高压电器, 2019, 55(1): 120-127, 134. [18] 胡诗秒. 浅析主变有载开关带电补油[J]. 变压器, 2012, 49(4): 48-49. [19] 包乙春, 梁洛耕. 一起电力变压器注油方式不当引发故障的分析及处理[J]. 电气开关, 2015, 53(6): 105-106. [20] 潘小勇. 流体力学与传热学[M]. 南昌: 江西高校出版社, 2019. |
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