Li Jiancheng, Guan Jian, Wang Xiaojun, Sun Yande, Lu Zhengquan, Ren Yan. Research and Application of Oil-Based Drilling Fluid Technology in Block Su 53[J]. Petroleum Drilling Techniques, 2014, 42(5): 62-67. DOI: 10.11911/syztjs.201405011
Citation: Li Jiancheng, Guan Jian, Wang Xiaojun, Sun Yande, Lu Zhengquan, Ren Yan. Research and Application of Oil-Based Drilling Fluid Technology in Block Su 53[J]. Petroleum Drilling Techniques, 2014, 42(5): 62-67. DOI: 10.11911/syztjs.201405011

Research and Application of Oil-Based Drilling Fluid Technology in Block Su 53

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  • Received Date: February 16, 2014
  • Revised Date: August 23, 2014
  • To solve the problems of wellbore instability,hole cleaning and anti-sticking in mudstone section of Shihezi formation of Block Su 53,new oil-based drilling fluids were developed.Indigenous organic clay,activators,filtrate reducer and wetting agents from different areas were used for performance comparison and to test at room temperature and after aging at 200 ℃.The all-oil drilling fluids were evaluated for their high temperature resistance,anti-contamination,inhibition,and suspending abilities,plugging ability and reservoir protection effect,and the wellsite results were examined.During the course of field testing in Well Su 53-82-50H,the all-oil drilling fluids were stable in performance and were easy to maintain,which indicated the new fluids could significantly improve ROP,and have good effect for lubricating and anti-sticking.Further,the hole enlargement rate was small,which fully met the operation requirements at the site.The results showed that oil-based drilling fluids can provide a viable way to solve the problems of drilling in long open-hole horizontal well in Block Su 53,and lessons learned could be provide technical solutions to reservoirs worldwide experiencing the same problems.
  • [1]
    闫振来,牛洪波,唐志军,等.低孔低渗气田长水平段水平井钻井技术[J].特种油气藏,2010,17(2):105-109. Yan Zhenlai,Niu Hongbo,Tang Zhijun,et al.Low porosity and permeability gas field long horizontal section horizontal well drilling technology[J].Special Oil Gas Reservoirs,2010,17 (2):105-109.
    [2]
    何振奎.泌页HF1井油基钻井液技术[J].石油钻探技术,2012,40(4):32-37. He Zhenkui.Oil base drilling fluid technology applied in Well Biye HF1[J].Petroleum Drilling Techniques,2012,40(4):32-37.
    [3]
    邱春阳,马法群,郭祥娟,等.永1-平1井四开小井眼高密度钻井液技术[J].钻井液与完井液,2011,28(3):85-87. Qiu Chunyang,Ma Faqun,Guo Xiangjuan,et al.Yong 1-Ping 1 Well quarto slimhole high density drilling technology[J].Drilling Fluid Completion Fluid,2011,28 (3):85-87.
    [4]
    张炜,刘振东,刘宝锋,等.油基钻井液的推广及循环利用[J].石油钻探技术,2008,36(6):34-38. Zhang Wei,Liu Zhendong,Liu Baofeng,et al.Popularization and recycling of oil-based drilling fluid[J].Petroleum Drilling Techniques,2008,36(6):34-38.
    [5]
    舒福昌,岳前升,黄红玺,等.新型无水全油基钻井液[J].断块油气田,2008,15(3):103-104. Shu Fuchang,Yue Qiansheng,Huang Hongxi,et al.A new anhydrous whole oil-based drilling fluid[J].Fault-Block Oil Gas Field,2008,15(3):103-104.
    [6]
    王茂功,王奎才,李英敏,等.白油基钻井液用有机膨润土的研制[J].钻井液与完井液,2009,26(5):1-3. Wang Maogong,Wang Kuicai,Li Yingmin,et al.The development of organic clay used in white oil drilling fluid[J].Drilling Fluid Completion Fluid,2009,26(5):1-3.
    [7]
    Wolfe R C,Coffin G B,Byrd R V.Effect of temperature and pressure on rheology of less toxic oil muds[R].SPE 11892,1983.
    [8]
    鄢捷年,赵雄虎.高温高压下油基钻井液的流变特性[J].石油学报,2003,24(3):104-109. Yan Jienian,Zhao Xionghu.Rheological properties of oil-based drilling fluids at high temperature and high pressure[J].Acta Petrolei Sinica,2003,24(3):104-109.
    [9]
    张勇,王荐,舒福昌.白油基油包水钻井液技术研究及其应用[J].石油天然气学报,2012,34(9):235-237. Zhang Yong,Wang Jian,Shu Fuchang.The research and application of white oil based oil-in-water drilling fluid[J].Journal of Oil and Gas Technology,2012,34(9):235-237.
    [10]
    Morton Edward Keith,Bomar Billy Bruce,Schiller Mark William,et al.Selection and evalution criteria for high performance drilling fluids[R].SPE 96342,2005.
    [11]
    鄢捷年,李志勇,张金波.深井油基钻井液在高温高压下表观粘度和密度的快速预测方法[J].石油钻探技术,2005,33(5):35-39. Yan Jienian,Li Zhiyong,Zhang Jinbo.Methods for quickly predicting apparent viscosity and density of oil-based drilling fluids under HTHP conditions[J].Petroleum Drilling Techniques,2005,33(5):35-39.
    [12]
    王显光,李雄,林永学.页岩水平井用高性能油基钻井液研究与应用[J].石油钻探技术,2013,41(2):17-22. Wang Xianguang,Li Xiong,Lin Yongxue.Research and application of high performance oil base drilling fluid for shale horizontal wells[J].Petroleum Drilling Techniques,2013,41(2):17-22.
    [13]
    万绪新.渤南区块页岩油地层油基钻井液技术[J].石油钻探技术,2013,41(6):44-50. Wan Xuxin.Oil-based drilling fluid applied in drilling shale oil reservoirs in Bonan Block[J].Petroleum Drilling Techniques,2013,41(6):44-50.
    [14]
    唐代绪,侯业贵,高杨,等.胜利油田页岩油水平井钻井液技术[J].石油钻采工艺,2012,34(5):45-48. Tang Daixu,Hou Yegui,Gao Yang,et al.Drilling fluid study on horizontal wells for shale oil reservoirs in Shengli Oilfield[J].Oil Drilling Production Technology,2012,34(5): 45-48.
    [15]
    任妍君,蒋官澄,张弘,等.基于乳状液转相技术的钻井液新体系室内研究[J].石油钻探技术,2013,41(4):87-91. Ren Yanjun,Jiang Guancheng,Zhang Hong,et al.Laboratory study of a novel drilling fluid based on emulsion phase diversion technology[J].Petroleum Drilling Techniques,2013,41(4): 87-91.
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