|
|
|
| Carbon emission analysis of skid-mounted mobile substations based on life cycle assessment |
| ZUO Tao1,2, LIU Jiantao3, JIANG Qiang4, ZHU Xiping5, DENG Wei1,2 |
1. Leshan ELECT Electrified Wire Netting Automation Co., Ltd, Leshan, Sichuan 614000; 2. Sichuan Prefabricated Cabin Power Equipment Engineering Technology Research Center, Leshan, Sichuan 614000; 3. School of Mechanical Engineering, Southwest Jiaotong University, Chengdu 611756; 4. School of Electronic Information and Artificial Intelligence, Leshan Normal University, Leshan, Sichuan 614000; 5. School of Electrical Engineering and Information, Southwest Petroleum University, Chengdu 610500 |
|
|
|
|
Abstract Skid-mounted mobile substations are a new type of power equipment capable of rapid deployment, immediate operation, and mobility (towability). Strengthening the analysis and research on the carbon emissions throughout their entire life cycle holds significant importance for implementing the philosophy of green and low-carbon development, transitioning traditional substation construction models to eco-friendly and low-carbon practices, and advancing China’s dual-carbon goals (carbon peaking and carbon neutrality). This study employs the life cycle assessment (LCA) method to establish a carbon emission accounting boundary for skid-mounted mobile substations. By integrating their unique characteristics in production, manufacturing, construction, and operation, a life cycle carbon emission analysis model and computational workflow are developed. Taking a real project as a case study, data on carbon emissions across all life cycle stages are collected, calculated, and analyzed. The results provide a scientific reference for accurately understanding the carbon footprint of skid-mounted mobile substations throughout their life cycle.
|
|
Received: 24 April 2025
|
|
|
|
| Cite this article: |
|
ZUO Tao,LIU Jiantao,JIANG Qiang等. Carbon emission analysis of skid-mounted mobile substations based on life cycle assessment[J]. Electrical Engineering, 2026, 27(1): 49-56.
|
|
|
|
| URL: |
|
https://dqjs.cesmedia.cn/EN/Y2026/V27/I1/49
|
[1] 汤振鹏, 刘泽庭, 胡中, 等. 移动变电站技术进展综述[J]. 电网技术, 2019, 43(9): 3415-3425. [2] 左涛, 刘建涛, 蒋强, 等. 非金属模块化预制舱式变电站节能环保关键技术[J]. 电气技术, 2024, 25(4): 59-65, 76. [3] 于燕萍. 澳洲标准下E-house电气设计经验点滴[J].电气技术, 2015, 16(2): 109-114. [4] DEHGHAN H, GHAEMI H, SHADMAN S M, et al.Using the mobile substations in 132 kV network and studying their effects on the losses of network[C]//2012 Proceedings of 17th Conference on Electrical Power Distribution, Tehran, Iran, 2012: 1-4. [5] 郭红斌, 马驰, 文正其. 预制舱式模块化变电站关键技术及展望[J]. 电气技术, 2023, 24(9): 1-10, 19. [6] 胡天祥, 刘建涛, 蒋强, 等. 撬装式移动变电站智能化技术研究及应用[J]. 湖南电力, 2024, 44(6): 55-60. [7] 付鲁军, 骆虎, 贾一凡, 等. 12 kV气体绝缘断路器柜在原材料获取阶段和制造阶段碳排放计算与对比分析[J]. 高压电器, 2023, 59(4): 17-23. [8] 游一民, 彭振搏, 戴冬云, 等. 40.5 kV C-GIS全生命周期内碳排放计算与分析[J]. 高压电器, 2022, 58(9): 13-19. [9] 左涛, 李敏, 宋英杰, 等. 变电站预制舱围护结构建设能耗与碳排放计算及分析[J]. 电气时代, 2024(3): 88-92. [10] SCHAUBROECK T.Sustainability assessment of product systems in dire Straits due to ISO 14040- 14044 standards: five key issues and solutions[J]. Journal of Industrial Ecology, 2022, 26(5): 1600-1604. [11] Greenhouse gases-carbon footprint of products- Requirements and guidelines for quantification: ISO 14067:2018[S]. [12] 韩晓男, 李秋实, 孙珂. 特高压与超高压交流输电技术节能降耗比较研究[J]. 电工技术, 2021(17): 145-148, 158. [13] 预制舱式二次组合设备技术规范: Q/GDW 11157—2017[S]. [14] ZUO Tao, LIU Jiantao, JIANG Qiang, et al.Economic thickness analysis of insulation layer of prefabricated cabin substation based on the whole life cycles[C]//The Proceedings of the 19th Annual Conference of China Electrotechnical Society, Xi’an, China, 2024. [15] HERTWICH E, GIBON T, BOUMAN E, et al.Integrated lifecycle assessment of electricity-supply scenarios confirms global environmental benefit of low-carbon technologies[J]. Proceedings of the National Academy of Sciences of the Unite States of America, 2015, 112(20): 6277-6282. [16] 胡亚山, 庄典, 朱可, 等. 混凝土结构与钢结构变电站建筑全生命周期碳排放对比研究[J]. 建筑科学, 2022, 38(12): 275-282. [17] 孙巍, 朱学成, 刘健, 等. 高寒区域配电变压器套管故障分析及治理措施[J]. 电瓷避雷器, 2021(2): 95-99, 106. [18] 左涛, 李敏, 王福明, 等. 基于三种变电站建设模式的建站期能耗与碳排放计算及分析[J]. 电气时代, 2025(4): 117-122. [19] 毕子健, 刘泽其, 许远超, 等. 基于全生命周期评价的变压器碳足迹模型研究[J]. 环境技术, 2023, 41(2): 108-113. |
|
|
|