古龙页岩油开发试验钻井设计优化与实践Optimization and practice of drilling design for Gulong shale oil development test
杨智光,潘荣山,苑晓静,常雷,李继丰,朱健军,赵英楠,邵帅
YANG Zhiguang,PAN Rongshan,YUAN Xiaojing,CHANG Lei,LI Jifeng,ZHU Jianjun,ZHAO Yingnan,SHAO Shuai
摘要(Abstract):
古龙页岩油与国内外陆相页岩油相比,陆相淡水沉积环境的青山口组黏土矿物体积分数较高,且多孔多缝,呈纹层状结构,易发生层间散裂、性脆,易吸水膨胀垮塌,独特的地质特性给古龙页岩油钻井带来了巨大挑战。针对钻井过程中容易出现井壁失稳、井漏、摩擦阻力大、钻井周期长等钻井技术难题,从平台井部署、井身结构、井眼轨道、提速技术、钻井液、固井等方面开展优化技术研究,创新采用了“双二维”轨道模型、“一趟钻”技术、油基钻井液、多级固井顶替等一系列新技术。结果表明:与GYP1井相比,试验区的平均钻井速度从11.44 m/h提高至27.75 m/h、水平段固井质量优质率从71.51%提升至86.27%,平均钻井周期从108.17 d缩短至26.82 d。研究成果为古龙页岩油实现储量动用最大化、施工效率最优化提供了强有力的技术支撑,也为古龙页岩油立体化、规模化、效益化开发奠定了基础,对推进中国陆相页岩油技术革命具有重要指导意义。
Compared with continental shale oils in China and abroad, clay minerals in Qingshankou Formation in continental fresh water sedimentary environment have higher volume fraction, and are porous and multi-fractured, presenting laminated structure that is prone to inter-layer cracking, brittleness, and easy water absorption to swell and collapse. These unique geological characteristics bring much challenge to Gulong shale oil drilling. In view of drilling technical difficulties encountered during drilling process, such as wellbore instability, lost circulation, high friction and long drilling cycle, optimization techniques are studied from the aspects of platform well deployment, wellbore structure, borehole trajectory, speed-up technique, drilling fluid and cementing. A series of new techniques are innovatively adopted, including “double 2D” track model, “one-trip drilling” technique, oil-based drilling fluid and multi-stage cementing displacement. The results show that, compared with Well GYP1, average drilling speed increases from 11.44 m/h to 27.75 m/h of test area, high quality rate of cementing in horizontal section increases from 71.51% to 86.27%, and drilling cycle decreases from 108.17 d to 26.82 d. The research provides technical support for maximizing reserves producing and optimizing operation efficiency of Gulong shale oil, and lays a foundation for 3D, large-scale and beneficial development of Gulong shale oil, with guiding significance in promoting technical revolution of continental shale oil in China.
关键词(KeyWords):
古龙页岩油;钻井设计;一体化;“双二维”轨道模型;“一趟钻”技术
Gulong shale oil;drilling design;integration;“double 2D” track model;“one-trip drilling” technique
基金项目(Foundation): 黑龙江省2021“揭榜挂帅”科技攻关项目“古龙页岩油增产改造关键技术研究”(2021ZZ10-04)
作者(Author):
杨智光,潘荣山,苑晓静,常雷,李继丰,朱健军,赵英楠,邵帅
YANG Zhiguang,PAN Rongshan,YUAN Xiaojing,CHANG Lei,LI Jifeng,ZHU Jianjun,ZHAO Yingnan,SHAO Shuai
DOI: 10.19597/J.ISSN.1000-3754.202403034
参考文献(References):
- [1]杨智光,李吉军,齐悦,等.松辽盆地富含伊利石的古龙页岩水化特性及其对岩石力学参数的影响[J].大庆石油地质与开发,2022,41(3):139-146.YANG Zhiguang,LI Jijun,QI Yue,et al. Hydration characteristics of illite-rich Gulong shale and its influence on rock mechanical parameters in Songliao Basin[J]. Petroleum Geology&Oilfield Development in Daqing,2022,41(3):139-146.
- [2]庞彦明,王永卓,王瑞,等.松辽盆地古龙页岩油水平井试采分析及产能预测[J].大庆石油地质与开发,2020,39(3):137-146.PANG Yanming,WANG Yongzhuo,WANG Rui,et al. Production test analysis and productivity prediction of horizontal wells in Gulong shale oil reservoirs, Songliao Basin[J]. Petroleum Geology&Oilfield Development in Daqing, 2020, 39(3):137-146.
- [3]丁寒生.松辽盆地北部中浅层油页岩分布特征及资源潜力[J].四川地质学报,2014,34(3):350-354,358.DING Hansheng. Distribution and resource potential of mediumshallow oil shale in the north of the Songliao Basin[J]. Acta Geologica Sichuan,2014,34(3):350-354,358.
- [4]孙龙德,刘合,何文渊,等.大庆古龙页岩油重大科学问题与研究路径探析[J].石油勘探与开发,2021,48(3):453-463.SUN Longde,LIU He,HE Wenyuan,et al. An analysis of major scientific problems and research paths of Gulong shale oil in Daqing Oilfield, NE China[J]. Petroleum Exploration and Development,2021,48(3):453-463.
- [5]孙永兴,贾利春.国内3 000 m长水平段水平井钻井实例与认识[J].石油钻采工艺,2020,42(4):393-401.SUN Yongxing, JIA Lichun. Cases and understandings on the drilling of horizontal well with horizontal section of 3 000 m long in China[J]. Oil Drilling&Production Technology,2020,42(4):393-401.
- [6]迟建功.大庆古龙页岩油水平井钻井技术[J].石油钻探技术,2023,51(6):12-17.CHI Jiangong. Drilling technologies for horizontal wells of Gulong shale oil in Daqing[J]. Petroleum Drilling Techniques,2023,51(6):12-17.
- [7]王广昀,王凤兰,蒙启安,等.古龙页岩油战略意义及攻关方向[J].大庆石油地质与开发,2020,39(3):8-19.WANG Guangyun,WANG Fenglan,MENG Qi’an,et al. Strategic significance and research direction for Gulong shale oil[J]. Petroleum Geology&Oilfield Development in Daqing,2020,39(3):8-19.
- [8]胡文瑞.地质工程一体化是实现复杂油气藏效益勘探开发的必由之路[J].中国石油勘探,2017,22(1):1-5.HU Wenrui.Geology-engineering integration:A necessary way to realize profitable exploration and development of complex reservoirs[J].China Petroleum Exploration,2017,22(1):1-5.
- [9]何骁,周鹏,杨洪志,等.页岩气地质工程一体化管理实践与展望[J].天然气工业,2022,42(2):1-10.HE Xiao, ZHOU Peng, YANG Hongzhi, et al. Management practice and prospect of shale gas geology-engineering integration[J]. Natural Gas Industry,2022,42(2):1-10.
- [10]柳伟荣,倪华峰,王学枫,等.长庆油田陇东地区页岩油超长水平段水平井钻井技术[J].石油钻探技术,2020,48(1):9-14.LIU Weirong, NI Huafeng, WANG Xuefeng, et al. Shale oil horizontal drilling technology with super-Long horizontal laterals in the Longdong Region of the Changqing Oilfield[J].Petroleum Drilling Techniques,2020,48(1):9-14.
- [11]刘茂森,付建红,白璟.页岩气双二维水平井轨迹优化设计与应用[J].特种油气藏,2016,23(2):147-150,158.LIU Maosen,FU Jianhong,BAI Jing. Optimization of shale gas dual-2D horizontal-well trajectories and its application[J].Special Oil&Gas Reservoirs,2016,23(2):147-150,158.
- [12]王跃文,陈百军,陈均亮,等.松辽盆地古龙页岩油层顶底板断层封闭性及油气聚集有利区优选[J].大庆石油地质与开发,2022,41(3):53-67.WANG Yuewen, CHEN Baijun, CHEN Junliang, et. al. Roof and floor faults seal of Gulong shale oil reservoir in Songliao Basin and optimization of favorable areas for oil and gas accumulation[J]. Petroleum Geology&Oilfield Development in Daqing,2022,41(3):53-67.
- [13]王玉华,梁江平,张金友,等.松辽盆地古龙页岩油资源潜力及勘探方向[J].大庆石油地质与开发,2020,39(3):20-34.WANG Yuhua, LIANG Jiangping, ZHANG Jinyou, et al.Resource potential and exploration direction of Gulong shale oil in Songliao Basin[J]. Petroleum Geology&Oilfield Development in Daqing,2020,39(3):20-34.
- [14]吴殿友,李隆承,张斌,等.水平段“一趟钻”高效钻头优选及改进设计[J].设备管理与维修,2021, 42(13):111-113.WU Dianyou,LI Longcheng,ZHANG Bin,et al. Optimization and design improvement of “one-trip drilling” high-efficiency drill bit in horizontal section[J]. Plant Maintenance Engineering,2021,42(13):111-113.
- [15]胡德高,黄文君,石小磊,等.页岩气水平钻井延伸极限预测与参数优化[J].科学技术与工程,2021, 21(17):7053-7058.HU Degao,HUANG Wenjun,SHI Xiaolei,et al. Prediction of extension limit and parameter optimization of shale gas horizontal drilling[J]. Science and Technology and Engineering, 2021,21(17):7053-7058.
- [16]赵岩龙,李星宇,方正魁,等.裂缝性页岩油储层三维数字岩心电阻率模拟[J].西安石油大学学报(自然科学版),2022,37(1):51-57.ZHAO Yanlong,LI Xingyu,FANG Zhengkui,et al. Numerical simulation of resistivity of 3D digital core of fractured shale oil reservoir[J]. Journal of Xi’an Shiyou University(Natural Science Edition),2022,37(1):51-57.
- [17]吴伟,梁志凯,郑马嘉,等.页岩储层孔隙结构与分形特征演化规律[J].油气地质与采收率,2022,29(4):35-45.WU Wei,LIANG Zhikai,ZHENG Majia,et al. Pore structures in shale reservoirs and evolution laws of fractal characteristics[J]. Petroleum Geology and Recovery Efficiency, 2022, 29(4):35-45.
- [18]赵国英.水平井“工厂化”部署与设计优化:以四川威远页岩气藏为例[J].天然气勘探与开发,2018,41(1):51-57.ZHAO Guoying. Deployment and optimization of “factory-like”horizontal well:A case study on Weiyuan shale gas reservoirs,Sichuan Basin[J]. Natural Gas Exploration and Development,2018,41(1):51-57.
- [19]代锋,雷正义,陈鹏举,等.川南深层页岩气井大尺寸井眼一趟钻PDC钻头优化设计研究与应用[J].钻采工艺,2023,46(5):40-46.DAI Feng,LEI Zhengyi,CHEN Pengju,et al. Research and application of PDC bit optimization design for large-size borehole one-trip drilling in deep shale gas wells in Southern Sichuan[J].Drilling&Production Technology,2023,46(5):40-46.
- [20]吴鹏程,汪瑶,付利,等.深层页岩气水平井“一趟钻”技术探索与实践[J].石油机械,2023,51(8):26-33.WU Pengcheng, WANG Yao, FU Li, et al. Exploration and practice of “one trip” technology fordeep shale gas horizontal wells[J]. China Petroleum Machinery,2023,51(8):26-33.
- [21]田立强,陈现军,付群超.基于气测录井的高温高压地层压力随钻监测技术[J].重庆科技学院学报(自然科学版),2024,26(1):21-26.TIAN Liqiang,CHEN Xianjun,FU Qunchao. Monitoring technology of formation pressure while drilling under high temperature and high pressure based on gas logging[J]. Journal of Chongqing University of Science and Technology(Natural Sciences Edition),2024,26(1):21-26.
- [22]杨亮,陈鹏,金兴明,等.随钻测录一体化系统设计[J].录井工程,2015,26(3):84-87,108.YANG Liang, CHEN Peng, JIN Xingming, et al. Design of integrated system of well logging and mud logging while drilling[J].Mud Logging Engineering,2015,26(3):84-87,108.
- [23]张雅妮,王思敏,樊冰. CO2-O2-H2O环境下油套管腐蚀研究进展[J].腐蚀研究,2024,38(2):109-113,121.ZHANG Yani, WANG Simin, FAN Bing.Research progress on corrosion behavior and corrosion protection under CO2-O2-H2O Environment[J]. Corrosion Research, 2024, 38(2):109-113,121.
- 古龙页岩油
- 钻井设计
- 一体化
- “双二维”轨道模型
- “一趟钻”技术
Gulong shale oil - drilling design
- integration
- “double 2D” track model
- “one-trip drilling” technique
- 杨智光
- 潘荣山
- 苑晓静
- 常雷
- 李继丰
- 朱健军
- 赵英楠
- 邵帅
YANG Zhiguang - PAN Rongshan
- YUAN Xiaojing
- CHANG Lei
- LI Jifeng
- ZHU Jianjun
- ZHAO Yingnan
- SHAO Shuai
- 杨智光
- 潘荣山
- 苑晓静
- 常雷
- 李继丰
- 朱健军
- 赵英楠
- 邵帅
YANG Zhiguang - PAN Rongshan
- YUAN Xiaojing
- CHANG Lei
- LI Jifeng
- ZHU Jianjun
- ZHAO Yingnan
- SHAO Shuai