综合智慧能源 ›› 2026, Vol. 48 ›› Issue (2): 37-46.doi: 10.3969/j.issn.2097-0706.2026.02.004
徐长福1(
), 赵新冬1, 梁伟1, 贺兴2,*(
), 卜艺康2
收稿日期:2024-06-26
修回日期:2024-08-07
出版日期:2026-02-25
通讯作者:
*贺兴(1986),男,副研究员,博士,从事电力时空大数据分析与能源系统数字孪生技术等方面的研究,hexing_hx@126.com。作者简介:徐长福(1970),男,高级工程师,硕士,从事输变电状态监测信息管理与状态监测新技术等方面的研究,xuchangfu2000@126.com。
基金资助:
XU Changfu1(
), ZHAO Xindong1, LIANG Wei1, HE Xing2,*(
), BU Yikang2
Received:2024-06-26
Revised:2024-08-07
Published:2026-02-25
Supported by:摘要:
气体绝缘输电线路(GIL)管廊内部管道输送距离长且环境封闭,发生气体泄漏时危害极大,传感器部署的局限性导致长期以来泄漏判据设计较为单一。为解决这一问题,基于ANSYS软件,在虚拟环境中构建管廊气体扩散仿真模型,研究不同泄漏情况下SF6气体在管廊内的扩散特性。结合苏通GIL综合管廊实际工况,对GIL综合管廊数字孪生体进行多环境、多演绎路径的仿真推演,覆盖了多种不同的泄漏情境,可为多类工况下的气体泄漏缺陷智能算法设计提供数据支撑,也可为传感器的优化部署提供支持。
中图分类号:
徐长福, 赵新冬, 梁伟, 贺兴, 卜艺康. 基于数字孪生的GIL管廊SF6气体多泄漏场景下的扩散特性研究[J]. 综合智慧能源, 2026, 48(2): 37-46.
XU Changfu, ZHAO Xindong, LIANG Wei, HE Xing, BU Yikang. Study on diffusion characteristics of SF6 gas in GIL pipe gallery under multiple leakage scenarios based on digital twin[J]. Integrated Intelligent Energy, 2026, 48(2): 37-46.
| [1] | 齐波, 张贵新, 李成榕, 等. 气体绝缘金属封闭输电线路的研究现状及应用前景[J]. 高电压技术, 2015, 41(5): 1466-1473. |
| QI Bo, ZHANG Guixin, LI Chengrong, et al. Research status and prospect of gas-insulated metal enclosed transmission line[J]. High Voltage Engineering, 2015, 41(5): 1466-1473. | |
| [2] |
BENATO R, MARIO C D, KOCH H. High capability applications of long gas-insulated lines in structures[J]. IEEE Transactions on Power Delivery, 2007, 22: 619-626.
doi: 10.1109/TPWRD.2006.887094 |
| [3] | 赵科, 王静君, 刘通, 等. 直流GIL绝缘设计及局部放电检测研究进展[J]. 电力工程技术, 2017, 36(5): 98-102, 108. |
| ZHAO Ke, WANG Jingjun, LIU Tong, et al. A review of insulation design and partial discharge detection of DC gas insulated line[J]. Electric Power Engineering Technology, 2017, 36(5): 98-102, 108. | |
| [4] | 王一鹏, 梁丁丁, 石磊, 等. 基于CFD的SF6气体绝缘设备泄漏模拟及防护措施[J]. 安防技术, 2017, 5(2): 15-21. |
|
WANG Yipeng, LIANG Dingding, SHI Lei, et al. Leakage simulation of SF6 gas insulating equipment based on CFD and protective measure[J]. Journal of Security and Safety Technology, 2017, 5(2): 15-21.
doi: 10.12677/JSST.2017.52003 |
|
| [5] | 潘春娱. 220 kV GIL漏气原因分析[J]. 贵州电力技术, 2014, 17(6): 71-73. |
| PAN Chunyu. The analysis on the reason of the GIL air leakage in 220 kV system[J]. Guizhou Electric Power Technology, 2014, 17(6): 71-73. | |
| [6] | 周倩, 柯锟, 张晓星, 等. 基于SF6混合气体绝缘性能的设备补气策略研究[J]. 电力工程技术, 2021, 40(4): 175-181. |
| ZHOU Qian, KE Kun, ZHANG Xiaoxing, et al. Air supply strategy of equipment based on SF6 mixed gas insulation performance[J]. Electric Power Engineering Technology, 2021, 40(4): 175-181. | |
| [7] | 徐亮, 张高爽, 龙艳, 等. 特高压管廊GIL热特性的数值模拟[J]. 哈尔滨工业大学学报, 2018, 50(7): 177-184. |
| XU Liang, ZHANG Gaoshuang, LONG Yan, et al. Numerical simulation of thermal characteristics of gas-insulated transmission lines in UHV pipe gallery[J]. Journal of Harbin Institute of Technology, 2018, 50(7): 177-184. | |
| [8] | 张施令, 姚强, 邓保家, 等. 气体绝缘电力设备多源时间序列预测数学模型及应用研究[J/OL]. 综合智慧能源,1-8(2023-10-19)[2024-06-10]. https://link.cnki.net/urlid/41.1461.TK.20231018.1447.004. |
| ZHANG Shiling, YAO Qiang, DENG Baojia, et al. Loss models of typical electric equipment in a UHV converter valve hall under full working conditions[J/OL]. Intergrated Intelligent Energy,1-8(2023-10-19)[2024-06-10]. https://link.cnki.net/urlid/41.1461.TK.20231018.1447.004. | |
| [9] | 蒋军成, 潘旭海. 描述重气泄漏扩散过程的新型模型[J]. 南京工业大学学报(自然科学版), 2002, 24(1): 41-46. |
| JIANG Juncheng, PAN Xuhai. New model for heavy gas releasing dispersion analysis[J]. Journal of Nanjing University(Natural Science Edition), 2002, 24(1): 41-46. | |
| [10] | 腾云, 陈双, 邓洁清, 等. 智能巡检机器人系统在苏通GIL综合管廊工程中的应用[J]. 高电压技术, 2019, 45(2): 393-401. |
| TENG Yun, CHEN Shuang, DENG Jieqing, et al. Application of intelligent inspection robot system in sutong GIL utility tunnel project[J]. High Voltage Engineering, 2019, 45(2): 393-401. | |
| [11] | 何磊, 唐宝锋, 薛林, 等. 新型电力系统背景下智慧配电物联网云主站建设与应用[J]. 供用电, 2023, 40(7): 25-32. |
| HE Lei, TANG Baofeng, XUE Lin, et al. Construction and application of intelligent power distribution Internet of Things cloud master station under the background of new power system[J]. Distribution & Utilization, 2023, 40(7): 25-32. | |
| [12] |
李成雲, 杨东升, 周博文, 等. 基于数字孪生技术的新型电力系统数字化[J]. 综合智慧能源, 2024, 46(2): 1-11.
doi: 10.3969/j.issn.2097-0706.2024.02.001 |
|
LI Chengyun, YANG Dongsheng, ZHOU Bowen, et al. Digitization of new-type electric power systems based on digital twin technology[J]. Integrated Intelligent Energy, 2024, 46(2): 1-11.
doi: 10.3969/j.issn.2097-0706.2024.02.001 |
|
| [13] |
范仲鸣, 纪陵, 张晓瑞. 配电系统电力设备数字孪生底座系统设计[J]. 综合智慧能源, 2023, 45(3): 50-56.
doi: 10.3969/j.issn.2097-0706.2023.03.007 |
|
FAN Zhongming, JI Ling, ZHANG Xiaorui. Design of a base system for power equipment in a distribution system based on digital twin[J]. Integrated Intelligent Energy, 2023, 45(3): 50-56.
doi: 10.3969/j.issn.2097-0706.2023.03.007 |
|
| [14] | 程含渺, 李红斌, 徐晴, 等. 基于高维随机矩阵的系统状态评估方法研究[J]. 电力工程技术, 2018, 37(1): 72-78. |
| CHENG Hanmiao, LI Hongbin, XU Qing, et al. Research on system condition assessment based on large dimensional random matrices[J]. Electric Power Engineering Technology, 2018, 37(1): 72-78. | |
| [15] |
OHBA R, KOUCHI A, HARA T, et al. Validation of heavy and light gas dispersion models for the safety analysis of LNG tank[J]. Journal of Loss Prevention in the Process Industries, 2004, 17(5): 325-337.
doi: 10.1016/j.jlp.2004.06.003 |
| [16] | MA C X, WU F, LU R. Decision-making method of hazardous material transportation route based on particle swarm optimization algorithm and neural network[C]// Proceedings of 2008 IEEE Pacific-Asia Workshop on Computational Intelligence and Industrial Application. IEEE, 2008: 1023-1027. |
| [17] |
CORMIER B R, QI R F, YUN G, et al. Application of computational fluid dynamics for LNG vapor dispersion modeling: A study of key parameters[J]. Journal of Loss Prevention in the Process Industries, 2009, 22(3): 332-352.
doi: 10.1016/j.jlp.2008.12.004 |
| [18] | HE N, WU Z Z. Risk evaluation and simulation of chemical pollutants diffused into atmosphere[C]// Proceedings of 2009 3rd International Conference on Bioinformatics and Biomedical Engineering. IEEE, 2009: 1-4. |
| [19] | 郭治民, 张会强, 王希麟, 等. 用简化的联合PDF模型计算CH4扩散燃烧[J]. 工程热物理学报, 2002, 23(S1): 213-216. |
| GUO Zhimin, ZHANG Huiqiang, WANG Xilin, et al. Numerical simulation of turbulent jet diffusion CH4/air flame using joint presumed PDF model[J]. Journal of Engineering Thermophysics, 2002, 23(S1): 213-216. | |
| [20] | 吴玉新, 张建胜, 王明敏, 等. 简化PDF模型对Texaco气化炉的三维数值模拟[J]. 化工学报, 2007, 58(9): 2369-2374. |
| WU Yuxin, ZHANG Jiansheng, WANG Mingmin, et al. 3D numerical simulation of Texaco gasifier using assumed PDF model[J]. Journal of Chemical Industry and Engineering, 2007, 58(9): 2369-2374. | |
| [21] |
BABUŠKA I, TEMPONE R, ZOURARIS G E. Solving elliptic boundary value problems with uncertain coefficients by the finite element method: The stochastic formulation[J]. Computer Methods in Applied Mechanics and Engineering, 2005, 194: 1251-1294.
doi: 10.1016/j.cma.2004.02.026 |
| [22] |
LIU Y L, ZHENG J Y, XU P, et al. Numerical simulation on the diffusion of hydrogen due to high pressured storage tanks failure[J]. Journal of Loss Prevention in the Process Industries, 2009, 22(3): 265-270.
doi: 10.1016/j.jlp.2008.06.007 |
| [23] | 关为民, 卞超, 谭婷月, 等. 苏通GIL综合管廊SF6气体泄漏分布特性数值模拟研究[J]. 高压电器, 2020, 56(11): 102-110. |
| GUAN Weimin, BIAN Chao, TAN Tingyue, et al. Numerical simulation study on distribution characteristics of SF6 gas leakage in Suzhou—Nantong GIL integrated gallery[J]. High Voltage Apparatus, 2020, 56(11): 102-110. | |
| [24] | 陈邦国, 李峰, 赵文彬. GIL廊道内SF6气体泄漏扩散及风机安装优化研究[J]. 水电能源科学, 2020, 38(6): 177-180, 168. |
| CHEN Bangguo, LI Feng, ZHAO Wenbin. Study on SF6 gas leakage diffusion and fan installation optimization in GIL gallery[J]. Water Resources and Power, 2020, 38(6): 177-180, 168. | |
| [25] | 周宁, 滕欣, 袁雄军, 等. 基于可视化理论的重气泄漏扩散研究[J]. 环境工程, 2016, 34(10): 147-152. |
| ZHOU Ning, TENG Xin, YUAN Xiongjun, et al. Research of heavy gas leakage and diffusion based on the visualization theory[J]. Environmental Engineering, 2016, 34(10): 147-152. | |
| [26] | 卞超, 关为民, 王国良, 等. 特高压GIL管廊竖井中SF6泄漏特性的数值模拟研究[J]. 高压电器, 2021, 57(1): 33-40. |
| BIAN Chao, GUAN Weimin, WANG Guoliang, et al. Numerical simulation study on SF6 leakage characteristics in shaft of UHV GIL pipe[J]. High Voltage Apparatus, 2021, 57(1): 33-40. | |
| [27] | 孟志鹏, 王淑兰, 丁信伟. 可爆性气体泄漏扩散时均湍流场的数值模拟[J]. 安全与环境学报, 2003, 3(3): 25-28. |
| MENG Zhipeng, WANG Shulan, DING Xinwei. Numerical simulation of homo-turbulent field of explosible gas dispersion[J]. Journal of Safety and Environment, 2003, 3(3): 25-28. | |
| [28] | 孟志鹏, 王淑兰, 丁信伟. 可燃性及毒性气体在障碍物附近泄漏扩散的数值模拟[J]. 化工装备技术, 2004, 25(1): 47-50. |
| MENG Zhipeng, WANG Shulan, DING Xinwei. Numerical simulation of the flammable and toxic gases dispersing near the obstacle[J]. Chemical Equipment Technology, 2004, 25(1): 47-50. | |
| [29] | 孙涛, 陈福广. 安全为计主动出击: 南通海事全力保障苏通GIL管廊工程建设[J]. 中国海事, 2017(3): 68-69. |
| SUN Tao, CHEN Fuguang. Take the initiative for safety purpose—Nantong MSA endeavor to secure the construction of Sutong GIL pipe rack project[J]. China Maritime Safety, 2017(3): 68-69. | |
| [30] | 魏利军. 重气扩散过程的数值模拟[D]. 北京: 北京化工大学, 2000. |
| WEI Lijun. Numerical simulation of heavy gas diffusion process[D]. Beijing: Beijing University of Chemical Technology, 2000. |
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