WANG Minsheng, GUANG Xinjun, PI Guanglin, YAN Na, GENG Lidong. The Characteristics of Petroleum Engineering Technology Design and Innovation in a Low Oil Price Environment[J]. Petroleum Drilling Techniques, 2018, 46(6): 1-8. DOI: 10.11911/syztjs.2018133
Citation: WANG Minsheng, GUANG Xinjun, PI Guanglin, YAN Na, GENG Lidong. The Characteristics of Petroleum Engineering Technology Design and Innovation in a Low Oil Price Environment[J]. Petroleum Drilling Techniques, 2018, 46(6): 1-8. DOI: 10.11911/syztjs.2018133

The Characteristics of Petroleum Engineering Technology Design and Innovation in a Low Oil Price Environment

More Information
  • Received Date: June 26, 2018
  • Revised Date: September 27, 2018
  • In an environment of low oil price shocks,the oil and gas industry faces great difficulties and challenges.It is universally acknowledged that technology innovation in petroleum engineering is necessary in the industry to achieve low cost and high efficiency.In this context,many international oil companies vigorously promote transformational technical innovation and have established innovation management divisions.Their approach has resulted in new characteristics and new trends in technological innovation and technical development,and their experiences can serve as a useful reference for China.The paper analyzes the innovation background of petroleum engineering technology,and studies the characteristics of petroleum engineering technology developed by foreign companies.The strategies studied include examining howe technology innovation management has moved from being project and strategic driven to being value driven.In the new model,transboundary cooperation becomes a new form of business,the integrated technology service model becomes more important,and the technology innovation activities pay more attention to the practical technology of reducing the cost and increasing efficiency.Given the situation and challenges of oil and gas exploration and development in China,some of the best future development directions of petroleum engineering include intelligent drilling and completion technology,one-trip drilling technology,HTHP drilling and completion technology,complex structure well drilling and completion technology,refined fracturing technology and integrated solutions.We will start with a focus on the key technologies involved in these development directions.Developing a series of cost-reducing and efficiency-improving petroleum engineering technology as soon as possible is of great significance to the economic and efficient development of oil and gas resources in China.
  • [1]
    何盛宝.国际大石油公司技术研发管理特点和趋势[J].国际石油经济,2014,22(7):37-41.

    HE Shengbao.Changes in technology R&D management by international oil company majors[J].International Petroleum Economics,2014,22(7):37-41.
    [2]
    BP.BP energy outlook 2017[R/OL].London,United Kingdom,2017[2018-05-21].https://www.bp.com/content/dam/bp/pdf/energy-economics/energy-outlook-2017/bp-energy-outlook-2017.pdf.
    [3]
    GULEN G.Global hydrocarbon model upstream module design considerations[R/OL].(2014-10-27)[2018-05-21].https://www.eia.gov/outlooks/documentation/workshops/pdf/1_upstream_component_design_model_report_gurcan_gulen_bureau__econ_geology_nov_2014.pdf.
    [4]
    BP.Energy technology:ten signposts for the journey ahead[R/OL].London,United Kingdom,2017[2018-05-21]. https://www.bp.com/content/dam/bp-country/de_ch/PDF/technologie/Energy-technology-Ten-signposts-for-the-journey-ahead.pdf
    [5]
    THOMPSON D.The next wave of innovation in the E&P industry and how to make it work[R].Wood Mackenzie,2016.
    [6]
    吕建中,杨虹,袁磊,等.低油价下国际油气行业技术创新战略动向分析[J].国际石油经济,2015,23(12):16-22.

    LYU Jianzhong,YANG Hong,YUAN Lei,et al.Technology innovation strategy in international oil industry at low oil prices[J].International Petroleum Economics,2015,23(12):16-22.
    [8]
    JOHNSTON J,GUICHARD A.New findings in drilling and wells using big data analytics[R].OTC 26021,2015.
    [9]
    ZHAO Jie,SHEN Yuelin,CHEN Wei,et al.Machine learning:based trigger detection of drilling events based on drilling data[R].SPE 187512,2017.
    [10]
    鲜成钢.长期低油价下油气技术创新目标与方向探讨[J].石油科技论坛,2017,36(4):49-56.

    XIAN Chenggang.Targets and Directions of oil and gas technological innovation against long-term low oil prices background[J].Oil Forum,2017,36(4):49-56.
    [11]
    POUPEAU J F.The transformation continues[R].Austin:UBS Global Oil & Gas Conference,2016.
    [12]
    叶海超,光新军,王敏生,等.北美页岩油气低成本钻完井技术及建议[J].石油钻采工艺,2017,39(5):552-558.

    YE Haichao,GUANG Xinjun,WANG Minsheng,et al.Low-cost shale oil and gas drilling and completion technologies used in the North America and the suggestions[J].Oil Drilling & Production Technology,2017,39(5):552-558.
    [13]
    COURTIER J,WICKER J,JEFFERS T,et al.Optimizing the development of a stacked continuous resource play in the Midland Basin[R].URTEC 2461811,2016.
    [14]
    BUTLER B,GROSSMANN A,PARLIN J,et al.Study of multilateral-well-construction reliability[J].SPE Drilling & Completion,2017,32(1):42-50.
    [15]
    HOHL C,GRIMMER H,SCHMIDT J.High-temperature directional drilling positive displacement motor[R].OMC 2015-388,2015.
    [16]
    STEFANSSON A,DUERHOLT R,SCHRODER J,et al.A 300 degree Celsius directional drilling system[J].SPE 189677,2018.
    [17]
    RAMBERG R M,DAVIES S R H,ROGNOE H,et al.Steps to the subsea factory[R].OTC 24307,2013.
    [18]
    光新军,王敏生,李婧,等.海底工厂:海洋油气开发新技术[J].石油科技论坛,2016,35(5):57-62.

    GUANG Xinjun,WANG Mingsheng,LI Jing,et al.Subsea factory:new offshore oil and gas development technology[J].Oil Forum,2016,35(5):57-62.
    [20]
    光新军,王敏生,黄辉,等.獾式钻探技术及研究进展[J].钻采工艺,2016,39(6):24-27.

    GUANG Xinjun,WANG Minsheng,HUANG Hui,et al.Badger explorer drilling technology[J].Drilling & Production Technology,2016,39(6):24-27.
    [21]
    BARRAZA J,CAPDEROU C,JONES M C,et al.Increased cluster efficiency and fracture network complexity using degradable diverter particulates to increase production:Permian Basin Wolfcamp shale case study[R].SPE 187218,2017.
    [22]
    王宗礼,娄钰,潘继平.中国油气资源勘探开发现状与发展前景[J].国际石油经济,2017,25(3):1-6.

    WANG Zongli,LOU Yu,PAN Jiping.China's oil & gas resources exploration and development and its prospect[J].International Petroleum Economics,2017,25(3):1-6.
    [23]
    路保平,丁士东.中国石化页岩气工程技术新进展与发展展望[J].石油钻探技术,2018,46(1):1-9.

    LU Baoping,DING Shidong.New progress and development prospect in shale gas engineering technologies of Sinopec[J].Petroleum Drilling Techniques,2018,46(1):1-9.
    [24]
    牛新明,张进双,周号博."三超"油气井井控技术难点及对策[J].石油钻探技术,2017,45(4):1-7.

    NIU Xinming,ZHANG Jinshuang,ZHOU Haobo.Technological challenges and countermeasures in well control of ultra-deep,ultra-high temperature and ultra-high pressure oil and gas wells[J].Petroleum Drilling Techniques,2017,45(4):1-7.
    [25]
    马永生,蔡勋育,赵培荣.石油工程技术对油气勘探的支撑与未来攻关方向思考:以中国石化油气勘探为例[J].石油钻探技术,2016,44(2):1-9.

    MA Yongsheng,CAI Xunyu,ZHAO Peirong.The support of petroleum engineering technologies in trends in oil and gas exploration and development:case study on oil and gas exploration in Sinopec[J].Petroleum Drilling Techniques,2016,44(2):1-9.
    [26]
    BEIMS T.Purple Hayes No.1H Ushers in step changes in lateral length,well cost[J/OL].The American Oil & Gas Reporter,2016[2018-05-21].https://www.aogr.com/magazine/editors-choice/purple-hayes-no.-1h-ushers-in-step-changes-in-lateral-length-well-cost.
    [27]
    杨金华,郭晓霞.一趟钻新技术应用与进展[J].石油科技论坛,2017,36(2):38-40.

    YANG Jinhua,GUO Xiaoxia.Application of new technology:single bit-run drilling[J].Oil Forum,2017,36(2):38-40.
  • Cited by

    Periodical cited type(5)

    1. 马天寿,向国富,桂俊川,贾利春,唐宜家. 基于物理约束的分布式神经网络三维地应力预测模型. 地球物理学报. 2024(08): 3211-3228 .
    2. 田山川,甘仁忠,肖琳,丁乙,魏瑞华,陈晓文,徐永华,梁利喜. 准噶尔盆地南缘异常高压泥岩段地层压力预测方法. 特种油气藏. 2024(05): 20-30 .
    3. 吴百烈,彭成勇,武广瑷,楼一珊,尹彪. 可压性指数对压裂裂缝扩展规律的影响研究——以南海LF油田为例. 石油钻探技术. 2023(03): 105-112 . 本站查看
    4. 杜书恒,沈文豪,赵亚溥. 页岩储层应力敏感性定量评价:思路及应用. 力学学报. 2022(08): 2235-2247 .
    5. 马天寿,向国富,石榆帆,桂俊川,张东洋. 基于双向长短期记忆神经网络的水平地应力预测方法. 石油科学通报. 2022(04): 487-504 .

    Other cited types(4)

Catalog

    Article Metrics

    Article views (8163) PDF downloads (128) Cited by(9)
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return