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胜利油田罗家地区页岩储层可压性实验评价

郭海萱 郭天魁

郭海萱, 郭天魁. 胜利油田罗家地区页岩储层可压性实验评价[J]. 石油实验地质, 2013, 35(3): 339-346. doi: 10.11781/sysydz201303339
引用本文: 郭海萱, 郭天魁. 胜利油田罗家地区页岩储层可压性实验评价[J]. 石油实验地质, 2013, 35(3): 339-346. doi: 10.11781/sysydz201303339
Guo Haixuan, Guo Tiankui. Experimental evaluation of crushability of shale reservoirs in Luojia area, Shengli Oilfield[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2013, 35(3): 339-346. doi: 10.11781/sysydz201303339
Citation: Guo Haixuan, Guo Tiankui. Experimental evaluation of crushability of shale reservoirs in Luojia area, Shengli Oilfield[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2013, 35(3): 339-346. doi: 10.11781/sysydz201303339

胜利油田罗家地区页岩储层可压性实验评价

doi: 10.11781/sysydz201303339
基金项目: 中国石油化工股份有限公司科研课题"胜利油田页岩油储层压裂改造技术研究"(P12128)资助.
详细信息
    作者简介:

    郭海萱(1964- ),女,高级工程师,从事压裂酸化与天然气开采工作.E-mail:guo-h-x@163.com.

  • 中图分类号: TE135+.3

Experimental evaluation of crushability of shale reservoirs in Luojia area, Shengli Oilfield

  • 摘要: 页岩储层的"可压性评价",目前国内外尚无统一的评价方法.结合室内岩石力学和物性参数测试结果以及脆性指数计算方法,尝试对目标储层进行可压性评价,探索并形成较为系统的室内实验评价方法.结果显示,页岩抗张强度、单轴抗压强度、抗剪强度和断裂韧性较砂岩和碳酸盐岩低;垂直层理方向粘聚力大于平行层理方向,沉积层理面胶结脆弱;受诱导应力的作用,平行的沉积层理(天然裂缝系)与主裂缝夹角越大,越容易起裂.断裂韧性实验中,当人字形切槽与沉积层理面的夹角在45°以内时,裂缝容易沿层理面扩展;大于45°时,裂缝将穿过层理面扩展.综合分析表明,该页岩储层可压性较强.

     

  • [1] Mayerhofer M J,Lolon E P,Warpinski N R,et al.What is stimulated rock volume?.SPE 119890,2008.
    [2] Cipolla C L,Warpinski N R,Mayerhofer M J,et al.The relationship between fracture complexity,reservoir properties,and fracture-treatment design.SPE 115769,2008.
    [3] Sondergeld C H,Newsham K E,Comisky J T,et al.Petrophysical considerations in evaluating and producing shale gas resources.SPE 131768,2010.
    [4] Cipolla C,Weng X,Mack M,et al.Integrating microseismic mapping and complex fracture modeling to characterize fracture complexity.SPE 140185,2011.
    [5] King G E.Thirty years of gas shale fracturing:what have we learned?.SPE 133456,2010.
    [6] Rickman R,Mullen M,Petre E,et al.A practical use of shale petrophysics for stimulation design optimization:all shale plays are not clones of the Barnett shale.SPE 115258,2008.
    [7] Matthews H L,Schein G,Malone M.Stimulation of gas shales:they're all the same-right?.SPE 106070,2007.
    [8] Britt L K,Schoeffler J.The geomechanics of a shale play:what makes a shale prospective?.SPE 125525,2009.
    [9] Olson J E.Multi-fracture propagation modeling:Applications to hydraulic fracturing in shales and tight gas sands.ARMA 08-327,2008.
    [10] Cipolla C L,Warpinski N R,Mayerhofer M J.Hydraulic fracture complexity: diagnosis,remediation,and exploitation.SPE 115771,2008.
    [11] Wang Y,Miskimins J L.Experimental investigations of hydraulic fracture growth complexity in slick water fracturing treatments.SPE 137515,2010.
    [12] Soliman M Y,East L,Augustine J.Fracturing design aimed at enhancing fracture complexity.SPE 130043,2010.
    [13] 陈作,薛承瑾,蒋廷学,等.页岩气井体积压裂技术在我国的应用建议[J].天然气工业,2010,30(10):30-32.
    [14] Waters G,Dean B,Downie R,et al.Simultaneous hydraulic fracturing of adjacent horizontal wells in the Woodford shale.SPE 119635,2009.
    [15] 朱日房,张林晔,李钜源,等.渤海湾盆地东营凹陷泥页岩有机储集空间研究[J].石油实验地质,2012,34(4):352-356.
    [16] Goktan R M,Yilmaz N G.A new methodology for the analysis of the relationship between rock brittleness index and drag pick cutting[J].The Journal of The South African Institute of Mining and Metallurgy,2005,105:727-733.
    [17] Mullen M,Roundtree R,Barree B.A composite determination of mechanical rock properties for stimulation design (what to do when you don't have a sonic log).SPE 108139,2007.
    [18] Beugelsdijk L J L,Pater C J,Sato K,et al.Experimental hydraulic fracture propagation in a multi fractured medium.SPE 59419,2000.
    [19] 卢运虎,陈勉,金衍,等.深层地应力地理方位确定的新方法[J].岩石力学与工程学报,2011,30(2):233-237.
    [20] 刘佑荣,唐辉明.岩体力学[M].北京:化学工业出版社,2008:42-55.
    [21] 易顺民,朱珍德.裂隙岩体损伤力学导论[M].北京:科学出版社,2005:38-47.
    [22] Grieser B,Bray J.Identification of production potential in unconventional reservoirs.SPE 106623,2007.
    [23] 聂海宽,张金川.页岩气储层类型和特征研究[J].石油实验地质,2012,33(3):219-225.
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出版历程
  • 收稿日期:  2012-11-26
  • 修回日期:  2013-03-14
  • 刊出日期:  2013-05-28

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