Skip to main content
Top

2024 | OriginalPaper | Chapter

Low-Carbon Technology in Power Transformation Engineering

Authors : Chunli Wang, Xiaomin Chen, Jingxuan Lin, Xilong Chen, Zhen Xie, Yan Yan, Jun Wang, Ming Meng

Published in: The Proceedings of 2023 International Conference on Wireless Power Transfer (ICWPT2023)

Publisher: Springer Nature Singapore

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The goal of “dual carbon” and the goal of building a new power system also put forward new requirements for power transformation engineering. The application of various low-carbon technologies in the whole life cycle of the power transformation engineering and the construction of low-carbon or zero-carbon substation is a research hotspot at present. This paper analyzes the possible low-carbon technology and its carbon reduction benefits from three stages: design and planning, architecture and construction, operation and maintenance. In the design and planning stage, substation location is essential; In the architecture and construction stage, there are low-carbon technologies and energy-saving measures such as prefabricated building and classification and reuse of construction waste; In the operation and maintenance stage, there are various intelligent systems and energy-saving equipment such as the joint inspection system, SF6 gas replacement and low-energy transformer. It is hoped that these low-carbon technologies can provide a reference for future low-carbon power transformation engineering.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference Peng, J., Wang, J., Qi, F., et al.: Multi-stage expansion planning of a distribution network with double-carbon policy. Power Syst. Prot. Control 50(07), 153–161 (2022). (in Chinese) Peng, J., Wang, J., Qi, F., et al.: Multi-stage expansion planning of a distribution network with double-carbon policy. Power Syst. Prot. Control 50(07), 153–161 (2022). (in Chinese)
2.
go back to reference Li, B., Zhao, C., Wang, R.: Research on new power system and distribution network planning strategy in the context of double carbon. Electr. Switchgear 60(06), 6–8+67 (2022). (in Chinese) Li, B., Zhao, C., Wang, R.: Research on new power system and distribution network planning strategy in the context of double carbon. Electr. Switchgear 60(06), 6–8+67 (2022). (in Chinese)
3.
go back to reference Kang, C., Du, E., Guo, H., et al.: Primary exploration of six essential factors in new power system. Power System Technol. 47(05), 1741–1750 (2023). (in Chinese) Kang, C., Du, E., Guo, H., et al.: Primary exploration of six essential factors in new power system. Power System Technol. 47(05), 1741–1750 (2023). (in Chinese)
4.
go back to reference Du, X., Wang, J., Zhang, Y.: Prediction and analysis of carbon emissions in the electric power industry. Energy China 44(08), 12–19 (2022). (in Chinese) Du, X., Wang, J., Zhang, Y.: Prediction and analysis of carbon emissions in the electric power industry. Energy China 44(08), 12–19 (2022). (in Chinese)
5.
go back to reference Hu, Y., Zhuang, D., Zhu, K., et al.: A comparative study on lifecycle carbon emissions of concrete structure and steel structure substations. Build. Sci. 38(12), 275–282 (2022). (in Chinese) Hu, Y., Zhuang, D., Zhu, K., et al.: A comparative study on lifecycle carbon emissions of concrete structure and steel structure substations. Build. Sci. 38(12), 275–282 (2022). (in Chinese)
6.
go back to reference Qi, W., Nan, Z.: A comprehensive evaluation model for substation locating. Modern Electr. Power 01, 41–48 (1999). (in Chinese) Qi, W., Nan, Z.: A comprehensive evaluation model for substation locating. Modern Electr. Power 01, 41–48 (1999). (in Chinese)
7.
go back to reference Ju, P., Wang, Y., Li, J.: Comprehensive planning of distribution networks with genetic algorithms. J. Hohai Univ. (Nat. Sci.) (01), 87–90 (2003). (in Chinese) Ju, P., Wang, Y., Li, J.: Comprehensive planning of distribution networks with genetic algorithms. J. Hohai Univ. (Nat. Sci.) (01), 87–90 (2003). (in Chinese)
8.
go back to reference Xu, Z.X., Gu, J.: Application of discrete particle swarm optimization algorithm to substation location. Electrotech. Appl. (04), 35–38+115 (2006). (in Chinese) Xu, Z.X., Gu, J.: Application of discrete particle swarm optimization algorithm to substation location. Electrotech. Appl. (04), 35–38+115 (2006). (in Chinese)
9.
go back to reference Yu, J., Piao, Z., Sun, R., et al.: Application of GIS and particle swarm optimization in rural substation locating. Trans. CSAE 25(05), 146–149 (2009). (in Chinese) Yu, J., Piao, Z., Sun, R., et al.: Application of GIS and particle swarm optimization in rural substation locating. Trans. CSAE 25(05), 146–149 (2009). (in Chinese)
10.
go back to reference Su, H., Zhang, J., Liang, Z., et al.: Substation life cycle cost planning based on the GIS spatial analysis and improved PSO algorithm. Proc. CSEE 32(16), 92–99 (2012). (in Chinese) Su, H., Zhang, J., Liang, Z., et al.: Substation life cycle cost planning based on the GIS spatial analysis and improved PSO algorithm. Proc. CSEE 32(16), 92–99 (2012). (in Chinese)
11.
go back to reference Dong, Q.: Evaluation model and empirical research of substation siting under low-carbon background. North China Electric Power University (2014). (in Chinese) Dong, Q.: Evaluation model and empirical research of substation siting under low-carbon background. North China Electric Power University (2014). (in Chinese)
12.
go back to reference Wang, J., Guo, X., An, D.: Evaluation system construction for substation siting with low carbon development. Shaanxi Electr. Power 43(01), 60–65 (2015). (in Chinese) Wang, J., Guo, X., An, D.: Evaluation system construction for substation siting with low carbon development. Shaanxi Electr. Power 43(01), 60–65 (2015). (in Chinese)
13.
go back to reference Hu, J.: System integration technology and design method of prefabricated building. Technol. Innov. Appl. 13(18), 193–196 (2023). (in Chinese) Hu, J.: System integration technology and design method of prefabricated building. Technol. Innov. Appl. 13(18), 193–196 (2023). (in Chinese)
14.
go back to reference Chen, J., Peng, C., Li, C., et al.: A review of development situation and assessment standard for prefabricated buildings. Build. Struct. 52(S2), 1503–1508 (2022). (in Chinese) Chen, J., Peng, C., Li, C., et al.: A review of development situation and assessment standard for prefabricated buildings. Build. Struct. 52(S2), 1503–1508 (2022). (in Chinese)
15.
go back to reference He, Q., Shi, C., Huang, W.: Review on the design of exterior wall of low energy consumption prefabricated buildings. J. BEE 51(03), 30–36 (2023). (in Chinese) He, Q., Shi, C., Huang, W.: Review on the design of exterior wall of low energy consumption prefabricated buildings. J. BEE 51(03), 30–36 (2023). (in Chinese)
16.
go back to reference Cao, X., Li, X., Zhu, Y., et al.: A comparative study of environmental performance between prefabricated and traditional residential buildings in China. J. Clean. Prod. 109(16), 131–143 (2015)CrossRef Cao, X., Li, X., Zhu, Y., et al.: A comparative study of environmental performance between prefabricated and traditional residential buildings in China. J. Clean. Prod. 109(16), 131–143 (2015)CrossRef
17.
go back to reference Liu, M., Wu, Z., Wang, J., et al.: Energy efficiency and carbon emissions evaluation of prefabricated construction in housing industrialization. Build. Struct. 45(12), 71–75 (2015). (in Chinese) Liu, M., Wu, Z., Wang, J., et al.: Energy efficiency and carbon emissions evaluation of prefabricated construction in housing industrialization. Build. Struct. 45(12), 71–75 (2015). (in Chinese)
18.
go back to reference Bonamente, E., Merico, M.C., Rinaldi, S., et al.: Environmental impact of industrial prefabricated buildings: carbon and energy footprint analysis based on an LCA approach. Energy Procedia 61, 2841–2844 (2014)CrossRef Bonamente, E., Merico, M.C., Rinaldi, S., et al.: Environmental impact of industrial prefabricated buildings: carbon and energy footprint analysis based on an LCA approach. Energy Procedia 61, 2841–2844 (2014)CrossRef
19.
go back to reference Yang, C.: Application advantages and development of prefabricated building technology under the background of “double carbon.” Block-Brick-Tile 05, 43–45 (2023). (in Chinese) Yang, C.: Application advantages and development of prefabricated building technology under the background of “double carbon.” Block-Brick-Tile 05, 43–45 (2023). (in Chinese)
20.
go back to reference Li, Y., Chen, J., Li, T., et al.: The design strategy of zero energy prefabricated buildings in Western China—a case study of the project Qiju 3.0 for Solar Decathlon China 2022. Architectural J. (12), 46–51 (2022). (in Chinese) Li, Y., Chen, J., Li, T., et al.: The design strategy of zero energy prefabricated buildings in Western China—a case study of the project Qiju 3.0 for Solar Decathlon China 2022. Architectural J. (12), 46–51 (2022). (in Chinese)
21.
go back to reference Gao, T.: Classification and reuse of construction waste under green concept. Build. Technol. Dev. 48(10), 101–102 (2021). (in Chinese) Gao, T.: Classification and reuse of construction waste under green concept. Build. Technol. Dev. 48(10), 101–102 (2021). (in Chinese)
22.
go back to reference Hao, L., Mei, Y., He, J.: Analysis of carbon emission reduction effect of construction waste treatment. Constr. Technol. 52(04), 62–66 (2023). (in Chinese) Hao, L., Mei, Y., He, J.: Analysis of carbon emission reduction effect of construction waste treatment. Constr. Technol. 52(04), 62–66 (2023). (in Chinese)
23.
go back to reference Zhang, G., Zhang, Z., Shen, F.: Review of the current situation and development of substation inspection robots. Yunnan Electr. Power 50(06), 2–8 (2022). (in Chinese) Zhang, G., Zhang, Z., Shen, F.: Review of the current situation and development of substation inspection robots. Yunnan Electr. Power 50(06), 2–8 (2022). (in Chinese)
24.
go back to reference Lv, Q., Li, Y., Wang, H., et al.: Automatic navigation system of substation inspection robot based on machine vision technology. Autom. Instrum. 38(04), 65–69 (2023). (in Chinese) Lv, Q., Li, Y., Wang, H., et al.: Automatic navigation system of substation inspection robot based on machine vision technology. Autom. Instrum. 38(04), 65–69 (2023). (in Chinese)
25.
go back to reference Zhou, Z., Han, D., Zhao, M., et al.: Review on decomposition characteristics of SF6 alternative gases. Trans. China Electrotech. Soc. 35(23), 4998–5014 (2020). (in Chinese) Zhou, Z., Han, D., Zhao, M., et al.: Review on decomposition characteristics of SF6 alternative gases. Trans. China Electrotech. Soc. 35(23), 4998–5014 (2020). (in Chinese)
26.
go back to reference Zhou, W., Zheng, Y., Gao, K., et al.: Progress in researching electrical characteristics of environment-friendly insulating gases. High Voltage Eng. 44(10), 3114–3124 (2018). (in Chinese) Zhou, W., Zheng, Y., Gao, K., et al.: Progress in researching electrical characteristics of environment-friendly insulating gases. High Voltage Eng. 44(10), 3114–3124 (2018). (in Chinese)
27.
go back to reference Owens, J.G.: Greenhouse gas emission reductions through use of a sustainable alternative to SF6. In: 2016 IEEE Electrical Insulation Conference (EIC), Montreal, QC, Canada, pp. 535–538 (2016) Owens, J.G.: Greenhouse gas emission reductions through use of a sustainable alternative to SF6. In: 2016 IEEE Electrical Insulation Conference (EIC), Montreal, QC, Canada, pp. 535–538 (2016)
28.
go back to reference Nechmi, H.E., Beroual, A., Girodet, A., Vinson, P.: Fluoronitriles/CO2 gas mixture as promising substitute to SF6 for insulation in high voltage applications. IEEE Trans. Dielectr. Electr. Insul. 23(5), 2587–2593 (2016)CrossRef Nechmi, H.E., Beroual, A., Girodet, A., Vinson, P.: Fluoronitriles/CO2 gas mixture as promising substitute to SF6 for insulation in high voltage applications. IEEE Trans. Dielectr. Electr. Insul. 23(5), 2587–2593 (2016)CrossRef
29.
go back to reference Wang, L., Zhou, W., Zhang, T., et al.: Power frequency insulation performance of C4F7N/CO2 mixture under uniform and extremely non-uniform electric field. High Voltage Eng. 45(04), 1101–1107 (2019). (in Chinese) Wang, L., Zhou, W., Zhang, T., et al.: Power frequency insulation performance of C4F7N/CO2 mixture under uniform and extremely non-uniform electric field. High Voltage Eng. 45(04), 1101–1107 (2019). (in Chinese)
30.
go back to reference Li, S., Hu, T., Zeng, S., et al.: Research progress of natural ester insulating liquid transformer. Insulating Mater. 54(08), 18–23 (2021). (in Chinese) Li, S., Hu, T., Zeng, S., et al.: Research progress of natural ester insulating liquid transformer. Insulating Mater. 54(08), 18–23 (2021). (in Chinese)
31.
go back to reference Wu, L., Cheng, L., Qiu, N., et al.: Research progress and application prospect of amorphous alloys for distribution transformer. Hot Working Technol. 49(12), 10–13+20 (2020). (in Chinese) Wu, L., Cheng, L., Qiu, N., et al.: Research progress and application prospect of amorphous alloys for distribution transformer. Hot Working Technol. 49(12), 10–13+20 (2020). (in Chinese)
32.
go back to reference Du, Y.: Selection of transformer under new energy efficiency standard. Build. Electr. 40(06), 3–11 (2021). (in Chinese) Du, Y.: Selection of transformer under new energy efficiency standard. Build. Electr. 40(06), 3–11 (2021). (in Chinese)
Metadata
Title
Low-Carbon Technology in Power Transformation Engineering
Authors
Chunli Wang
Xiaomin Chen
Jingxuan Lin
Xilong Chen
Zhen Xie
Yan Yan
Jun Wang
Ming Meng
Copyright Year
2024
Publisher
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-97-0865-9_41