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1. 中国石油天然气集团有限公司超深层复杂油气藏勘探开发技术研发中心
2. 中国石油天然气股份有限公司塔里木油田公司
3. 新疆维吾尔自治区超深层复杂油气藏勘探开发工程研究中心
4. 新疆超深油气重点实验室
Published:2024
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[1]刘磊,张辉,徐珂,等.库车坳陷超深油气藏钻井井壁稳定性分析研究及应用[J].新疆大学学报(自然科学版中英文),2024,41(04):459-466.
[1]刘磊,张辉,徐珂,等.库车坳陷超深油气藏钻井井壁稳定性分析研究及应用[J].新疆大学学报(自然科学版中英文),2024,41(04):459-466. DOI: 10.13568/j.cnki.651094.651316.2024.04.08.0001.
DOI:10.13568/j.cnki.651094.651316.2024.04.08.0001.
库车坳陷克拉苏构造带超深油气储层具有埋深大、温度高、岩性变化大、应力场高等特点,导致基于常规井壁稳定性分析方法计算的钻井泥浆密度窗口不准,造成钻进过程中井壁失稳频发,给钻井安全和环境保护带来隐患.通过考虑温度效应对井筒应力的影响,加入基于Mohr-Coulomb破坏准则的弱面(裂缝)失稳条件,提出了一种根据岩石、弱面不发生剪切失稳的最小泥浆密度和不发生张性失稳的最大泥浆密度,以及孔隙压力和最小水平主应力的当量泥浆密度6个参数,共同确定超深储层钻井安全泥浆密度窗口的取值方法.实际资料应用结果表明,该方法对库车坳陷博孜区块超深复杂地层的坍塌压力和漏失压力的预测具有很好的适用性和准确性,为实际钻井施工设计提供有效参考.
The ultra-deep oil and gas reservoir in Rasu structural zone of Kuqa depression has the characteristics of large buried depth
high temperature
large lithologic change and high stress field
which leads to the inaccurate drilling mud density window based on the conventional wellbore stability analysis
resulting in frequent instability of the wellbore during the drilling process
and brings hidden dangers to drilling safety and environmental protection.By considering the influence of temperature effect on the borehole stress and adding the weak surface(fracture)instability condition based on Mohr-Coulomb destruction criterion
we proposed a method to determine the safe slurry density window of ultra-deep reservoir drilling according to six parameters: the minimum slurry density for shear instability and the maximum slurry density for tension instability in rock and weak surface
and the equivalent slurry density of pore pressure and minimum horizontal main stress. The application results of real data show that this method has good applicability and accuracy for the prediction of collapse pressure and leakage pressure in the ultra-deep complex formation in Bozi block of Kuqa depression
and can provide effective reference for the actual borehole drilling design.
王清华,杨海军,徐振平,等.塔里木盆地库车坳陷克探1井重大突破与勘探意义[J].中国石油勘探,2023,28(2):1-10.WANG Q H,YANG H J,XU Z P,et al.Major breakthrough and exploration significance of Well Ketan 1 in Kuqa Depression,Tarim Basin[J].China Petroleum Exploration,2023,28(2):1-10.(in Chinese)
田军,杨海军,吴超,等.博孜9井的发现与塔里木盆地超深层天然气勘探潜力[J].天然气工业,2020,40(1):11-19.TIAN J,YANG H J,WU C,et al.Discovery of Well Bozi 9 and ultra-deep natural gas exploration potential in the Kelasu tectonic zone of the Tarim Basin[J].Natural Gas Industry,2020,40(1):11-19.(in Chinese)
杨海军,李勇,唐雁刚,等.塔里木盆地克拉苏盐下深层大气田的发现[J].新疆石油地质,2019,40(1):12-20.YANG H J,LI Y,TANG Y G,et al.Discovery of Kelasu subsalt deep large gas field,Tarim Basin[J].Xinjiang Petroleum Geology,2019,40(1):12-20.(in Chinese)
WANG Y,WATSON R,ROSTAMI J,et al.Study of borehole stability of Marcellus shale wells in longwall mining areas[J].Journal of Petroleum Exploration and Production Technology,2014,4(1):59-71.
林龙生,王文文.井壁稳定性分析在煤层气勘探开发中的应用[J].煤炭科技,2021,42(5):117-121.LIN L S,WANG W W.Application of wellbore stability analysis in CBM exploration and development[J].Coal Science&Technology Magazine,2021,42(5):117-121.(in Chinese)
李高仁,史亚红,夏宏泉,等.基于Mogi-Coulomb强度准则的井壁稳定性力学分析新方法[J].中国安全生产科学技术,2018,14(10):70-75.LI G R,SHI Y H,XIA H Q,et al.New method for mechanical analysis of wellbore stability based on Mogi-Coulomb strength criterion[J].Journal of Safety Science and Technology,2018,14(10):70-75.(in Chinese)
KIRSCH G.Die theorie der elastizitat und die beaurforisse der festigkeitslehre[J].Zeitschrift des Vereines Deutsches Ingenieare,1898,42:797-807.
WESTERGAARD H M.Water pressures on dams during earthquakes[J].Transactions of the American Society of Civil Engineers,1933,98(2):418-433.
BIOT M A.General theory of three-dimensional consolidation[J].Journal of Applied Physics,1941,12:155-164.
BIOT M A.Theory of propagation of elastic waves in a fluid-saturated porous solid.I.Low-frequency range[J].The Journal of the Acoustical Society of America,1956,28(2):168-178.
BIOT M A.Theory of propagation of elastic waves in a fluid-saturated porous solid.II.Higher frequency range[J].The Journal of the Acoustical Society of America,1956,28(2):179-191.
BRADLEY W B.Failure of inclined boreholes[J].Journal of Energy Resources Technology,1979,101(4):232-239.
慈建发,何世明,李荣,等.钻前井壁力学稳定性研究[J].天然气工业,2006,26(6):68-71+162.CI J F,HE S M,LI R,et al.Pre-spud study on mechanical stability of wellbore[J].Nature Gas Industry,2006,26(6):68-71+162.(in Chinese)
STEPHENS G,VOIGHT B.Hydraulic fracturing theory for conditions of thermal stress[J].International Journal of Rock Mechanics and Mining Sciences&Geomechanics Abstracts,1982,19(6):279-284.
RITCHIE R H,SAKAKURA A Y.Asymptotic expansions of solutions of the heat conduction equation in internally bounded cylindrical geometry[J].Journal of Applied Physics,1956,27(12):1453-1459.
JAEGER J C,COOK N G W,ZIMMERMAN R W.Fundamentals of rock mechanics[M].Oxford:Blackwell Publishing,2007.
SETIAWAN N B,ZIMMERMAN R W.The implications of using anisotropic elasticity and fully-triaxial failure criteria for borehole stability analysis in shales[C]//Proceedings of the 53rd US Rock Mechanics/Geomechanics Symposium.June 23-26,2019,New York City,NY,USA.American Rock Mechanics Association,2019:ARMA-2019-2178.
ZHANG J C.Borehole stability analysis accounting for anisotropies in drilling to weak bedding planes[J].International Journal of Rock Mechanics and Mining Sciences,2013,60:160-170.
阎凯,李锋.塔里木油田井控技术研究[J].地球物理学进展,2008,23(2):522-527.YAN K,LI F.Research on the well control techniques in Tarim Oilfield[J].Progress in Geophysics,2008,23(2):522-527.(in Chinses)
徐珂,张辉,鞠玮,等.库车坳陷博孜X区块超深储层有效裂缝分布规律及对天然气产能的影响[J].地球科学,2023,48(7):2489-2505.XU K,ZHANG H,JU W,et al.Effective fracture distribution and its influence on natural gas productivity of ultra-deep reservoir in Bozi-X block of Kuqa depression[J].Earth Science,2023,48(7):2489-2505.(in Chinese)
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