川东南页岩气井压裂降压技术

周成香, 周玉仓, 李双明, 胡圆圆

周成香, 周玉仓, 李双明, 胡圆圆. 川东南页岩气井压裂降压技术[J]. 石油钻探技术, 2014, 42(4): 42-47. DOI: 10.3969/j.issn.1001-0890.2014.04.008
引用本文: 周成香, 周玉仓, 李双明, 胡圆圆. 川东南页岩气井压裂降压技术[J]. 石油钻探技术, 2014, 42(4): 42-47. DOI: 10.3969/j.issn.1001-0890.2014.04.008
Zhou Chengxiang, Zhou Yucang, Li Shuangming, Hu Yuanyuan. Fracturing Pressure Reducing Technique for Shale Gas Well in the Southeastern Sichuan[J]. Petroleum Drilling Techniques, 2014, 42(4): 42-47. DOI: 10.3969/j.issn.1001-0890.2014.04.008
Citation: Zhou Chengxiang, Zhou Yucang, Li Shuangming, Hu Yuanyuan. Fracturing Pressure Reducing Technique for Shale Gas Well in the Southeastern Sichuan[J]. Petroleum Drilling Techniques, 2014, 42(4): 42-47. DOI: 10.3969/j.issn.1001-0890.2014.04.008

川东南页岩气井压裂降压技术

基金项目: 

中国石油化工股份有限公司石油工程先导试验项目“彭页HF-1页岩气水平井分段压裂技术”(编号:34600297-12-FW0421-029)资助。

详细信息
    作者简介:

    周成香(1985- ),男,湖北襄阳人,2009年毕业于长江大学石油工程专业,在读硕士研究生,主要从事非常规油气的勘探开发工作。

  • 中图分类号: TE357.1

Fracturing Pressure Reducing Technique for Shale Gas Well in the Southeastern Sichuan

  • 摘要: 为实现川东南超深页岩储层有效改造,并最大限度地降低压裂施工压力,提出了优选射孔参数、进行压前酸液预处理、设计降阻率高的滑溜水体系及采用前置粉砂段塞技术等技术对策。通过分析和计算,采用φ89 mm射孔枪配合 SDP40HMX28-8 射孔弹,60°相位和18孔/m的孔密进行射孔。利用川东南超深页岩储层的岩心进行了溶蚀试验,根据试验结果结合地层特点确定了15.0%HCl+1.5%HF+2.0%高温缓蚀剂+1.5%铁离子稳定剂的酸液配方。根据地层特征,通过室内试验优选了配方为0.2%高效减阻剂SRFR-1+0.3%复合防膨剂+0.1%复合增效剂+0.02%消泡剂的滑溜水,其性能稳定,易返排,黏度约9~12 mPa·s,降阻率大于75%,对地层的伤害率小于10%。现场应用表明:采用优化后的射孔参数进行射孔,可以满足降低孔眼摩阻的要求;应用优选的酸液进行压前预处理,施工压力降低10~15 MPa;采用前置粉砂段塞技术,可以有效降低裂缝弯曲摩阻,达到降低施工压力的目的。这表明,采用提出的技术对策可以降低川东南超深页岩气井压裂施工压力。
    Abstract: In order to effectively stimulate the ultra-deep shale reservoirs in southeastern Sichuan and minimize the fracturing pressure,some technical solutions were proposed,such as optimization of perforation parameters,acid pretreatment before fracturing,design of slick water system with high friction reducing rate,and application of lead silt slug techniques.Through analysis and calculation,it was decided to use the φ89 mm perforating gun with type SDP40HMX28-8 charges for perforation at 18 shots/m and phase 60°.Based on core dissolution tests and characteristics of such ultra-deep shale reservoirs,a formula of 15.0% HCl+1.5% HF+2.0% HT corrosion inhibitor+1.5% ferric ion stabilizer was determined.According to the stratigraphic characteristics,a laboratory experiment was performed and it revealed a slick water system consisting of 0.2% efficient friction reducer SRFR-1+0.3% compound anti-swelling agent+0.1% compound synergist + 0.02% defoamer,which is stable and easy to flowback,with viscosity of about 9-12 mPa·s,friction reducing rate than 75% and formation damage less than 10%.Field application showed that the optimized perforation parameters could meet the requirement for perforation friction reduction;acid pretreatment before fracturing enabled the pressure reduced by 10-15 MPa;the lead silt slug technique could effectively reduce the friction due to fractures curvature,thereby reducing the fracturing pressure.It showed that these technical solutions could help to reduce the fracturing pressure in ultra-deep shale gas wells in the southeastern Sichuan.
  • [1] 薛承瑾.页岩气压裂技术现状及发展建议[J].石油钻探技术, 2011, 39(3):24-29. Xue Chengjin.Technical advance and development proposals of shale gas fracturing[J].Petroleum Drilling Techniques, 2011, 39(3):24-29.
    [2] 谭明文, 张应科, 钟水清, 等.川东北高温高压深井超深井酸压改造技术研究与应用[J].钻采工艺, 2011, 34(3):35-40, 114. Tan Mingwen, Zhang Yingke, Zhong Shuiqing, et al.Research and application of acid fracturing technology in HTHP deep and ultradeep well of northeast Sichuan Area[J].Drilling Production Technology, 2011, 34(3):35-40, 114.
    [3] 李海涛, 王永清, 李洪建, 等.压裂施工井的射孔优化设计方法[J].天然气工业, 1998, 18(2):53-56. Li Haitao, Wang Yongqing, Li Hongjian, et al.An optimum perforation design method for prefratureing wells[J].Natural Gas Industry, 1998, 18(2):53-56.
    [4] 王超, 刘广燕, 孙桓.超深水平井射孔的优化设计[J].内江科技, 2008, 29(8):91-92. Wang Chao, Liu Guangyan, Sun Huan.Optimized design of ultra-deep horizontal well perforation[J].Neijiang Science and Technology, 2008, 29(8):91-92.
    [5] 刘红现, 赵立强, 刘平礼, 等.前置酸改善水力压裂效果机理分析[J].石油天然气学报, 2008, 30(1):332-334, 398. Liu Hongxian, Zhao Liqiang, Liu Pingli, et al.Analysis on pore micro structure for sand stone acidizing[J].Journal of Oil and Gas Technology, 2008, 30(1):332-334, 398.
    [6] 何鹏, 刘寒梅, 李向东, 等.前置酸压裂技术在低渗透油田中的研究与应用[J].延安大学学报:自然科学版, 2013, 32(2):78-80, 85. He Peng, Liu Hanmei, Li Xiangdong, et al.Research and application of the pre-positioned acid fracturing technology in low permeability oilfield[J].Journal of Yan’an University:Natural Science Edition, 2013, 32(2):78-80, 85.
    [7] 唐颖, 张金川, 张琴, 等.页岩气井水力压裂技术及其应用分析[J].天然气工业, 2010, 30(10):33-38. Tang Ying, Zhang Jinchuan, Zhang Qin, et al.An analysis of hydraulic fracturing technology in shale gas wells and its application[J].Natural Gas Industry, 2010, 30(10):33-38.
    [8] 曾雨辰.砂段塞工艺在中原油田斜井压裂中的应用[J].天然气工业, 2004, 24(9):60-63. Zeng Yuchen.Application of sand-slug technology in deviated well fracturing in Zhongyuan Oilfield[J].Natural Gas Industry, 2004, 24(9):60-63.
    [9]

    Lord D L.Turbulent flow of stimulation fluids:an evaluation of friction loss scale-up methods[R].SPE 16889, 1987.

    [10]

    Nolte K G, Smith M B.Interpretation of fracturingpressured[J].JPT, 1981, 33(9):1767-1775.

  • 期刊类型引用(14)

    1. 冯昕媛,李春雨,刘永,张煜,谢贵琪. 柴达木盆地高温深部储层压裂改造技术. 石油工业技术监督. 2022(04): 63-67 . 百度学术
    2. 陈挺,邹清腾,柴剑,王志强,冯向涛. 低伤害滑溜水压裂液在长宁区块的应用. 石油地质与工程. 2020(06): 102-105 . 百度学术
    3. 马应娴,马乐瑶,郭建春,周瀚,熊雨佳,陈晔希,车继明. 低吸附耐高矿化度滑溜水体系研制与现场应用. 油田化学. 2020(04): 616-622 . 百度学术
    4. 王欣,李德旗,姜伟,卢海兵,易新斌,邹清腾,王天一,修乃岭,唐伟,李涛. 覆压水化作用对页岩水力压裂缝扩展的影响. 天然气工业. 2019(06): 81-86 . 百度学术
    5. 杨国旗,刘芳,程刚. 非常规天然气储层改造所用减阻剂的研究现状. 化工技术与开发. 2018(02): 41-42+51 . 百度学术
    6. 熊俊杰. 页岩气深井压裂用低伤害减阻水体系研究. 精细石油化工进展. 2017(05): 8-11 . 百度学术
    7. 杨帆,王琳,杨小华,姚奕明,王海波,杜涛. 压裂液防膨剂的研制与应用. 石油钻采工艺. 2017(03): 344-348 . 百度学术
    8. 孟磊,周福建,刘晓瑞,杨钊,石华强. 滑溜水用减阻剂室内性能测试与现场摩阻预测. 钻井液与完井液. 2017(03): 105-110 . 百度学术
    9. 肖佳林. 地质条件变化对涪陵页岩气井压裂的影响及对策. 断块油气田. 2016(05): 668-672 . 百度学术
    10. 刘斌,付育武. JY1HF井筇竹寺组页岩气体积压裂实践. 复杂油气藏. 2016(03): 69-73 . 百度学术
    11. 杨帆,王琳,林永学,杨小华,董晓强,王海波. 减阻水压裂液用黏土稳定剂的合成与应用. 钻井液与完井液. 2016(04): 109-113 . 百度学术
    12. 刘红磊,韩倩,李颖,赖建林,徐骞. 彭水区块水平井清水连续加砂压裂技术. 石油钻探技术. 2015(01): 13-19 . 本站查看
    13. 魏娟明,刘建坤,杜凯,眭世元,贾文峰,吴峙颖. 反相乳液型减阻剂及滑溜水体系的研发与应用. 石油钻探技术. 2015(01): 27-32 . 本站查看
    14. 吴雷泽,薛苗,鲁红升. 礁石坝区块页岩气压裂用滑溜水体系研究. 钻采工艺. 2015(06): 84-86+11 . 百度学术

    其他类型引用(3)

计量
  • 文章访问数:  3349
  • HTML全文浏览量:  67
  • PDF下载量:  3771
  • 被引次数: 17
出版历程
  • 收稿日期:  2014-05-19
  • 修回日期:  2014-06-18
  • 刊出日期:  1899-12-31

目录

    /

    返回文章
    返回