转油站集输系统能耗分析与评价软件开发
Development of Analysis & Evaluation Software for Gathering and Transportation System in Oil Transfer Station
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- 引用格式:
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关德慧,郑伟,尚志寅,田一辰,苑松楠,代轩瑞,刘俊博.转油站集输系统能耗分析与评价软件开发[J].天然气与石油,2019,37(5):0.doi:
Guan Dehui, Zheng Wei, Zhao Hongyang, Yao Chunxue, Wang Hao, Zhang Xian.Development of Analysis & Evaluation Software for Gathering and Transportation System in Oil Transfer Station[J].Natural Gas and Oil,2019,37(5):0.doi:
- DOI:
- 作者:
- 关德慧1 郑 伟2 尚志寅3 田一辰4 苑松楠5 代轩瑞1 刘俊博1
Guan Dehui1, Zheng Wei2, Zhao Hongyang1, Yao Chunxue1, Wang Hao1, Zhang Xian1
- 作者单位:
- 1. 东北石油大学石油工程学院,2. 东北石油局有限公司,3. 中国石油天然气股份有限公司管道廊坊输油气分公司,4. 中国石油天然气管道工程有限公司,5. 山西压缩天然气集团有限公司
1.School of Petroleum Engineering,Northeast Petroleum University, Daqing, Heilongjiang, 163318, China; 2.Northeast Petroleum Bureau, Changchun, Jilin, 130000, China
- 关键词:
- 转油站;集输系统;能耗分析;软件开发
Oil transfer station; Gathering and transportation system; Energy consumption analysis; Software development
- 摘要:
高含水量开发阶段是目前国内各大油田开采石油所面临的阶段。随着油田进入高含水开发阶段,油气集输系统运行效率较低、耗能较高的情况日趋严重。及时通过能耗分析与评价,提出改造方案来优化集输系统的运行是最重要的手段。针对该问题,研究开发了转油站集输系统能耗分析与评价软件,结合大庆某油田6号转油站集输系统实际运行情况进行了具体的能耗测试、计算、分析与评价,总结出系统的能耗分布状况,提出相应技改办法,实现系统高效运行。现场应用结果良好,系统耗气量下降28.44%,耗电量下降31.97%。该软件可供类似油田参考使用。
The high water cut development stage is the stage that the major oilfields in China are currently facing.As the oilfield enters the stage of high water cut development, the operation efficiency of the oil and gas gathering and transportation system is low, and the situation of high energy consumption is becoming increasingly serious.It is the most important to propose a transformation plan to optimize the operation of the gathering system through the analysis and evaluation on energy consumption.In response to this problem, the research and development of the "Energy Analysis and Evaluation Software for the Oil Transfer Station" are carried out.Combining with the actual operation of the gathering system of the No. 6 transfer station in an oilfield in Daqing, specific energy consumption testing, calculation, analysis and evaluation are performed.The energy consumption distribution of the system is summarized with corresponding technical reform to achieve efficient operation of the system.The field application is good, with the system air consumption decreased by 28.44%, and the power consumption decreased by 31.97%, which provides reference for similar oilfields.