Research on Energy Efficiency Evaluation Indexes of Offshore Multi-platform Interconnected Integrated Energy System

LOU Qinghui, NIU Honghai, CHEN Jun, OUYANG Jun, WEI Che, QIU Yingfeng

Distributed Energy ›› 2021, Vol. 6 ›› Issue (1) : 14-20.

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Distributed Energy ›› 2021, Vol. 6 ›› Issue (1) : 14-20. DOI: 10.16513/j.2096-2185.DE.2106011
Basic Research

Research on Energy Efficiency Evaluation Indexes of Offshore Multi-platform Interconnected Integrated Energy System

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Abstract

Offshore oil and gas platforms operate independently from traditional single platforms, and multi-platforms are interconnected through power grids and natural gas pipeline networks to form large regional offshore oilfield groups. The platform group has also formed a comprehensive energy system that integrates a variety of energy forms such as electricity, gas, heat, and cold. The degree of coupling and interaction between various energy systems has continued to deepen and change. However, the existing research lacks energy efficiency assessment indicators for the integrated energy system of offshore oil and gas platforms, and lacks a quantitative assessment of the energy efficiency level of the entire energy system. In order to better analyze the overall energy consumption characteristics of the offshore platform, this paper conducts research on the key indicators for the evaluation of the offshore platform energy system. Based on the unit product comprehensive gas consumption, gas-electricity ratio, the unit product comprehensive electricity consumption, the index system can reflect the use of primary and secondary energy and comprehensive energy efficiency of the integrated energy system, which is convenient for real-time analysis and benchmarking of the platform group.

Key words

offshore platform / interconnection / integrated energy / efficiency evaluation indexes

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Qinghui LOU , Honghai NIU , Jun CHEN , et al . Research on Energy Efficiency Evaluation Indexes of Offshore Multi-platform Interconnected Integrated Energy System[J]. Distributed Energy Resources. 2021, 6(1): 14-20 https://doi.org/10.16513/j.2096-2185.DE.2106011

References

[1]
李雪. 基于Energy Hub的海上平台电力系统能量协调优化研究[D]. 成都:西南石油大学,2017
LI Xue. Research on energy coordination and optimization of offshore platform power system based on energy hub[D]. Chengdu: Southwest Petroleum University, 2017
[2]
康鼎. 海上平台主要机械用能设备的节能评估[J]. 机械管理开发2016, 31(10): 40-41, 78.
KANG Ding. Energy-saving evaluation of major machinery energy equipment on offshore platforms[J]. Machinery Management Development, 2016, 31 (10): 40-41, 78.
[3]
李雪,张安安,敬佳佳. 海上平台电力系统研究综述[J]. 电网与清洁能源2016, 32(2): 1-7.
LI Xue, ZHANG An'an, JING Jiajia. A summary of research on offshore platform power system[J]. Power Grid and Clean Energy, 2016, 32 (2): 1-7.
[4]
刘洪,赵越,刘晓鸥,等. 计及能源品位差异的园区多能源系统综合能效评估[J]. 电网技术2019, 43(8): 2835-2843
LIU Hong, ZHAO Yue, LIU Xiaoou, et al. Comprehensive energy efficiency assessment of park multi-energy systems taking into account energy grade differences[J]. Power System Technology, 2019, 43(8): 2835-2843.
[5]
孙宁. 油田企业能耗评价与优化决策研究[D]. 青岛:中国石油大学,2008.
SUN Ning. Research on energy consumption evaluation and optimization decision of oilfield enterprises[D]. Qingdao: China University of Petroleum, 2008.
[6]
江亿,刘晓华,薛志峰,等. 能源转换系统评价指标的研究[J]. 中国能源2004, 26(3): 27-31.
JIANG Yi, LIU Xiaohua, XUE Zhifeng, et al. Research on the evaluation index of energy conversion system[J]. China Energy, 2004, 26(3): 27-31.
[7]
LOU Q H, NIU H H, CHEN J, et al. Research on the analysis and optimization method of offshore oil-platforms energy system[J]. IOP Conference Series: Earth and Environmental Science, 2019, 267(6): 062052.
[8]
ZHANG A A, ZHANG H, QADRDAN M, et al. Optimal planning of integrated energy systems for offshore oil extraction and processing platforms[J]. Energies, 2019, 12(4): 756.
[9]
李茜,毛雅铃,赵达维,等. 考虑电–气混合储能的海上微能系统标准化矩阵建模与联合优化调度[J]. 电网技术2020, 44(2): 522-531.
LI Qian, MAO Yaling, ZHAO Dawei, et al. Standardized matrix modeling and joint optimal dispatch of offshore micro-energy systems considering electric-gas hybrid energy storage[J]. Power System Technology, 2020, 44(2): 522-531.
[10]
娄清辉,牛洪海,陈俊,等. 海上多平台互联系统能源管控技术及系统研究[J]. 节能2020, 39(3): 40-44.
LOU Qinghui, NIU Honghai, CHEN Jun, et al. Research on energy management and control technology and system of offshore multi-platform interconnection system[J]. Energy Conservation, 2020, 39(3): 40-44.
[11]
马建国,蒲明,张余,等. 油气田企业能效对标[M]. 北京:石油工业出版社2016: 4.
[12]
马向追,苏恒循,金浩,等. 基于可视化指标看板展示的海上油田群能效评价指标体系构建研究[J]. 节能2020, 39(3): 37-39.
MA Xiangzhui, SU Hengxun, JIN Hao, et al Research on the construction of an energy efficiency evaluation index system for offshore oilfields based on visual indicator board display[J]. Energy Conservation, 2020, 39(3): 37-39.
[13]
全国能源基础与管理标准化技术委员会能源管理分技术委员会. 设备热效率计算通则:GB/T 2588—2000[S]. 北京:中国标准出版社,2000.
[14]
全国能源基础与管理标准化技术委员会. 综合能耗计算通则:GB/T 2589—2008[S]. 北京:中国标准出版社,2008.
[15]
任江波,孙仲民,顾乔根,等. 计及储能全寿命周期运维的综合能源系统优化配置[J]. 广东电力2019, 32(10): 71-78.
REN Jiangbo, SUN Zhongmin, GU Qiaogen, et al. Optimizing configuration of integrated energy system considering full life cycle operation and maintenance of energy storage[J]. Guangdong Electric Power, 2019, 32(10): 71-78.

Funding

National Key Research and Development Program of China(2018YFB0904800)
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