全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
Engineering  2023 

Energy Consumption Analysis and Optimization of Electric Submersible Pump System

DOI: 10.4236/eng.2023.155021, PP. 269-274

Keywords: Offshore Oil Fields, Electric Submersible Pumps, System Energy Consump-tion, System Efficiency, Energy Conservation and Consumption Reduction

Full-Text   Cite this paper   Add to My Lib

Abstract:

Electric submersible pumps account for a considerable proportion in the development of the Bohai Oilfield. Improving the system efficiency of the electric submersible pump wells, ensuring that the units operate in the high-efficiency zone, is essential. Analysis shows that the efficiency of the electric submersible pump system depends on the wear and tear of each component of the submersible pump equipment, the setting of operational parameters, and more importantly, the production status and daily management level of the oil well. Therefore, improving the structural performance of the submersible pump product, optimizing the parameters setting of the oil well, strengthening daily management, establishing a scientific management system, and improving the production management process and system can effectively improve the production efficiency and economic benefits of the oil well, and further achieve the goal of energy saving and emission reduction. In addition, it is necessary to actively promote the concept and technology of energy saving and emission reduction, encourage oilfield enterprises to explore effective measures to reduce the energy consumption of the electric submersible pump system by strengthening the scientific management system, and achieve a green, low-carbon, and high-quality development of oilfield production to achieve the unity of economic benefits, social benefits, and environmental benefits. This article applies the above measures in the P oilfield to achieve energy optimization of submersible electric pump systems, reducing the daily power consumption of single well submersible electric pump systems by 371?kWh?per day, increasing the submersible electric pump's lifespan by 200 days, generating considerable project benefits.

References

[1]  Wang, D.J. and Lu, X.Y. (2014) Calculation and Analysis of the Efficiency of Electric Submersible Pump Wells. Petroleum and Petrochemical Energy Conservation, 4, 4-7. (In Chinese)
https://kns.cnki.net/kcms2/article/abstract?v=3uoqIhG8C44YLTlOAiTRKgchrJ08w1e7M8Tu7YZds8_MBYFMH59sTpOjN0P_sfv610WtKAp_lZ604eIqCZ4pkTcro4fGAcRB&uniplatform=NZKPT&src=copy
[2]  Xu, D.F. (2017) Design and Operation Management of Multiphase Fluid Electric Submersible Pump. Equipment Management and Maintenance, 411, 66-68. (In Chinese)
https://kns.cnki.net/kcms2/article/abstract?v=3uoqIhG8C44YLTlOAiTRKibYlV5Vjs7iAEhECQAQ9aTiC5BjCgn0RlPFaKWbCB5_UnE3MiVs04v-IqAzQlCBPEnl4mEZYnMu&uniplatform=NZKPT
[3]  Duan, Y.C., Yu, J.F., Cao, Y.F., et al. (2019) Energy Consumption Analysis of Electric Submersible Pump Wells in Offshore Oilfields. Petrochemical Technology, 26, 287. (In Chinese)
https://kns.cnki.net/kcms2/article/abstract?v=3uoqIhG8C44YLTlOAiTRKibYlV5Vjs7iLik5jEcCI09uHa3oBxtWoMXwGI6aY4y3zp2u1s2UYH3hFXzjV4eYpOGhPVkTB5tk&uniplatform=NZKPT
[4]  Xiao, Z.H. (2008) Research on the Demulsification Mechanism and Influencing Factors of Crude Oil Emulsion. Journal of Petroleum and Natural Gas, 106, 165-168+178. (In Chinese)
https://kns.cnki.net/kcms2/article/abstract?v=3uoqIhG8C44YLTlOAiTRKgchrJ08w1e7VSL-HJEdEx3x9ccUi4t8AjLtzr6t3IaOhVAIHtq8iS6D7BsqwkymqiMUVEm50uUN&uniplatform=NZKPT
[5]  Wang, M.H. (2022) Research on Crude Oil Demulsification Technology Treatment. Shandong Chemical Industry, 51, 113-114+117. (In Chinese)
https://kns.cnki.net/kcms2/article/abstract?v=3uoqIhG8C44YLTlOAiTRKibYlV5Vjs7iJTKGjg9uTdeTsOI_ra5_XfVL_CgafzYW7XzHbO1-lVEYAUbHdkeAe3QYLsgZ6Iev&uniplatform=NZKPT

Full-Text

comments powered by Disqus

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133