准噶尔盆地玛湖凹陷砾岩油藏水平井组重复压裂时机优化Optimization of horizontal well pattern re-fracturing timing in conglomerate reservoir in Mahu Sag of Junggar Basin
任广聪,马新仿,张士诚,邹雨时,段贵府,熊启勇
REN Guangcong,MA Xinfang,ZHANG Shicheng,ZOU Yushi,DUAN Guifu,XIONG Qiyong
摘要(Abstract):
准噶尔盆地玛湖凹陷砾岩油藏可通过水平井重复压裂同时钻加密井的改造方式,提高单井产量和油藏动用程度,但是在加密井投产时,水平井组的重复压裂时机目前仍不明确。针对这一问题,建立不同投产时间水平井组初次压裂和重复压裂的裂缝扩展模型和油藏数值模型,通过产量历史拟合确定模型的正确性。基于井组最优累计产油量,优化重复压裂时机。结果表明:加密井不生产时,单井的最优重复压裂时机为投产后第4年,井组的最优重复压裂时机为最晚投产井投产后第4年;加密井生产时,单井的最优重复压裂时机为投产后第5年,井组的最优重复压裂时机为最晚投产井投产后第3年。井组重复压裂考虑水平井加密时,总体增油效果优于仅老井重复压裂,应及时钻加密井,获取最大井组累计产油量。研究结果为致密油藏考虑加密井的水平井组重复压裂时机优选提供理论依据。
The single-well production and reservoir producing degree of Mahu Sag conglomerate reservoir in Junggar Basin can be increased by drilling infill wells while re-fracturing parent horizontal wells, but the best re-frac timing is not determined when considering infill wells production. Aiming to this problem, fractures propagation model and reservoir numerical model of primary fracturing and re-fracturing of horizontal well pattern at different time are es-tablished with reliability validation by production history matching. Re-fracturing timing is optimized based on opti-mal cumulative production of the well pattern. The results indicate that without infill wells production, the best re-frac timing for single well is the 4th year after commencing production, and for well pattern is the 4th year after the last well commenced production. With infill wells production, the best re-frac timing for single well is the 5th year after being put into production, and for well pattern is the 3th year after the last well commenced production. Re-fracturing with infill wells obtains more cumulative oil production than only re-fracturing parent wells. Infill wells should be drilled in time to obtain maximum cumulative production of the well pattern.This research provides theoretical basis for the re-fracturing time optimization of horizontal well pattern considering infill wells.
关键词(KeyWords):
重复压裂;水平井组;加密井;压裂时机;累计产量;准噶尔盆地;玛湖凹陷;砾岩油藏
re-fracturing;horizontal well pattern;infill wells;re-frac timing;cumulative production;Junggar Basin;Mahu Sag;conglomerate reservoir
基金项目(Foundation): 中国石油战略合作科技专项“玛湖砾岩油藏提高采收率机理及关键技术研究”(ZLZX2020-01-04)
作者(Author):
任广聪,马新仿,张士诚,邹雨时,段贵府,熊启勇
REN Guangcong,MA Xinfang,ZHANG Shicheng,ZOU Yushi,DUAN Guifu,XIONG Qiyong
DOI: 10.19597/j.issn.1000-3754.202201007
参考文献(References):
- [1]何海清,范土芝,郭绪杰,等.中国石油“十三五”油气勘探重大成果与“十四五”发展战略[J].中国石油勘探,2021,26(1):17-30.HE Haiqing,FAN Tuzhi,GUO Xujie,et al.Major achievements in oil and gas exploration of Petro China during the 13th Five-Year Plan period and its development strategy for the 14th Five-Year Plan[J].China Petroleum Exploration,2021,26(1):17-30.
- [2]匡立春,唐勇,雷德文,等.准噶尔盆地玛湖凹陷斜坡区三叠系百口泉组扇控大面积岩性油藏勘探实践[J].中国石油勘探,2014,19(6):14-23.KUANG Lichun,TANG Yong,LEI Dewen,et al.Exploration of fan-controlled large-area lithologic oil reservoirs of Triassic Baikouquan Formation in slope zone of Mahu Depression in Junggar Basin[J].China Petroleum Exploration,2014,19(6):14-23.
- [3]李国欣,覃建华,鲜成钢,等.致密砾岩油田高效开发理论认识、关键技术与实践:以准噶尔盆地玛湖油田为例[J].石油勘探与开发,2020,47(6):1185-1197.LI Guoxin,QIN Jianhua,XIAN Chenggang,et al.Theoretical understandings,key technologies and practices of tight conglomerate oilfield efficient development:A case study of the Mahu oilfield,Junggar Basin,NW China[J].Petroleum Exploration and Development,2020,47(6):1185-1197.
- [4]许江文,李建民,邬元月,等.玛湖致密砾岩油藏水平井体积压裂技术探索与实践[J].中国石油勘探,2019,24(2):241-249.XU Jiangwen,LI Jianmin,WU Yuanyue,et al.Exploration and practice of volume fracturing technology in horizontal well of Mahu tight conglomerate reservoirs[J].China Petroleum Exploration,2019,24(2):241-249.
- [5]郭华军,单祥,李亚哲,等.玛湖凹陷北斜坡百口泉组储集层物性下限及控制因素[J].新疆石油地质,2018,39(1):63-69.GUO Huajun,SHAN Xiang,LI Yazhe,et al.Lower limits of reservoir physical properties and controlling factors of Baikouquan Formation on the northern slope of Mahu Sag[J].Xinjiang Petroleum Geology,2018,39(1):63-69.
- [6]况晏,司马立强,瞿建华,等.致密砂砾岩储层孔隙结构影响因素及定量评价:以玛湖凹陷玛131井区三叠系百口泉组为例[J].岩性油气藏,2017,29(4):91-100.KUANG Yan,SIMA Liqiang,QU Jianhua,et al.Influencing factors and quantitative evaluation for pore structure of tight glutenite reservoir:A case of the Triassic Baikouquan Formation in Ma131 well field,Mahu Sag[J].Lithologic Reservoirs,2017,29(4):91-100.
- [7]陈程,彭梦芸,赵婷,等.玛湖凹陷北、西斜坡区百口泉组储集层对比及勘探启示[J].新疆石油地质,2022,43(1):18-25.CHEN Cheng,PENG Mengyun,ZHAO Ting,et al.Reservoir comparison and exploration enlightenment of Baikouquan formation in northern and western slopes of Mahu sag[J].Xinjiang Petroleum Geology,2022,43(1):18-25.
- [8]SHAH M,SHAH S,SIRCAR A.A comprehensive overview on recent developments in refracturing technique for shale gas reservoirs[J].Journal of Natural Gas Science&Engineering,2017,46(4):350-364.
- [9]BHATTACHARYA S,NIKOLAOU M.Comprehensive optimization methodology for stimulation design of low-permeability unconventional gas reservoirs[J].SPE Journal,2016,21(3):947-964.
- [10]JACOBS T.Renewing mature shale wells through refracturing[J].Journal of Petroleum Technology,2014,66(4):52-60.
- [11]房平亮,冉启全,刘立峰,等.致密储层低产井重复压裂方式及裂缝参数优化[J].科学技术与工程,2017,17(24):32-38.FANG Pingliang,RAN Qiquan,LIU Lifeng,et al.Re-fracturing mode and fracture parameter optimization for stripper well in tight oil reservoir[J].Science Technology and Engineering,2017,17(24):32-38.
- [12]COURTIER J,GRAY D,SMITH M,et al.Legacy well protection refrac mitigates offset well completion communications in joint industry project[C].Midland:SPE Liquids-Rich Basins Conference-North America,2016.
- [13]AJISAFE F O,EJOFODOMI E,PORCU M M.Understanding impact of well spacing and interference on production performance in unconventional reservoirs,Permian Basin[C].Austin:SPE/AAPG/SEG Unconventional Resources Technology Conference,2017.
- [14]CIPOLLA C L,MOTIEE M,KECHEMIR A.Integrating microseismic,geomechanics,hydraulic fracture modeling,and reservoir simulation to characterize parent well depletion and infill well performance in the Bakken[C].Austin:SPE/AAPG/SEG Unconventional Resources Technology Conference,2018.
- [15]KING G E,RAINBOLT M F,SWANSON C.Frac hit induced production losses:Evaluating root causes,damage location,possible prevention methods and success of remedial treatments[C].San Antonio:SPE Annual Technical Conference and Exhibition,2017.
- [16]JOSLIN K,RANJBAR E,SHAHAMAT S,et al.Pressure sink mitigation:Effect of preloading parent wells to better control infill hydraulic fracture propagation[C].Calgary:SPE Canada Unconventional Resources,2020.
- [17]庞鹏,刘振宇,王胡振,等.重复压裂改造时机数值模拟[J].大庆石油地质与开发,2015,34(6):83-87.PANG Peng,LIU Zhenyu,WANG Huzhen,et al.Numerical simulation of refracturing opportunity[J].Petroleum Geology&Oilfield Development in Daqing,2015,34(6):83-87.
- [18]WENG X,KRESSE O,COHEN C,et al.Modeling of hydraulicfracture-network propagation in a naturally fractured formation[J].SPE Production&Operations,2011,26(4):368-380.
- [19]GUO X,WU K,AN C,et al.Numerical investigation of effects of subsequent parent-well injection on interwell fracturing interference using reservoir-geomechanics-fracturing modeling[J].SPEJournal,2019,24(4):1884-1902.
- [20]WANG S,TAN Y,SANGNIMNUAN A,et al.Learnings from the hydraulic fracturing test site(HFTS)#1,Midland Basin,west Texas-A geomechanics perspective[C].Colorado:SPE 7th Unconventional Resources Technology Conference,2019.
- 重复压裂
- 水平井组
- 加密井
- 压裂时机
- 累计产量
- 准噶尔盆地
- 玛湖凹陷
- 砾岩油藏
re-fracturing - horizontal well pattern
- infill wells
- re-frac timing
- cumulative production
- Junggar Basin
- Mahu Sag
- conglomerate reservoir