川东北分水岭构造须家河组钻井提速技术研究与应用
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中石化中原石油工程公司钻井工程技术研究院,中石化中原石油工程公司钻井工程技术研究院,中石化中原石油工程有限公司地球物理测井公司,中石化中原石油工程有限公司地球物理测井公司,中石化中原石油工程有限公司西南钻井分公司

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P634;TE243

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中国石化集团公司科技专项“四川盆地深探井钻完井及测试关键技术研究”(编号:JP16034)


Study on how to improving drilling rates in Xujiahe formation of Fenshuiling structure in northeast Sichuan
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Drilling Engineering and Technology Research Institute, Zhongyuan Petroleum Engineering Co. Ltd, SINOPEC,Drilling Engineering and Technology Research Institute, Zhongyuan Petroleum Engineering Co. Ltd, SINOPEC,Logging Company, Zhongyuan Petroleum Engineering Co. Ltd, SINOPEC,Logging Company, Zhongyuan Petroleum Engineering Co. Ltd, SINOPEC,Southwest Drilling Company Zhongyuan Petroleum Engineering Co. Ltd, SINOPEC

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    摘要:

    针对川东北分水岭构造须家河组地层段机械钻速慢的钻井难题,开展了提速技术研究。首先通过工程地质特征分析,获取了须家河组地层矿物组分含量和岩石力学参数,并有针对性地提出提速技术思路和提速手段。从分3井现场应用效果看,气体钻井技术、螺杆钻具+混合钻头以及扭冲工具+混合钻头钻井技术均取得不同程度的提速效果,其中气体钻井技术平均机械钻速最高,达到4.78 m/h,与同井采用常规泥浆钻井相比提高4.49倍。

    Abstract:

    In order to solve the problem of low drilling rate in Xujiahe formation of Fenshuiling structure in northeast Sichuan, study has been carried out to improve drilling rates. First, the mineral components and rock mechanics parameters in Xujiahe formation have been obtained through analysis of the engineering geological characteristics. Then, the technical route and measures for speeding up drilling rates in Xujiahe formation have been specifically analyzed and discussed. Applications in F3 well have demonstrated that drilling rates increased in different degrees with use of gas drilling and the combined drilling of screw tool+ hybrid bit and torsional impact tool+ hybrid bit. Meanwhile, the highest average rate of penetration with gas drilling reached 4.78m/h, and increased by 4.49 times compared with conventional drilling.

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甘心,侯树刚,赵俊峰,等.川东北分水岭构造须家河组钻井提速技术研究与应用[J].钻探工程,2019,46(2):17-22.
GAN Xin, HOU Shugang, ZHAO Junfeng, et al. Study on how to improving drilling rates in Xujiahe formation of Fenshuiling structure in northeast Sichuan[J]. Drilling Engineering, 2019,46(2):17-22.

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  • 收稿日期:2018-10-30
  • 最后修改日期:2018-10-30
  • 录用日期:2019-01-07
  • 在线发布日期: 2019-01-31
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