Study and Field Testing on the Top Cementing Technology of Screen Pipe Free from Drilling and Fishing
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摘要: 常规筛管顶部固井工艺兼有筛管和尾管固井工艺的优点,但是固井后需要钻除管内附件。为提高筛管顶部固井工艺效率,优化了内、外管柱的结构,使用皮碗封隔器和滑套式分级箍代替常规筛管顶部固井工艺中的盲板和压差式分级箍,通过移动内管柱位置实现坐挂、注水泥、循环等操作,固井后提出内管柱时将残留附件一次带出,套管内不会残留盲板和分级箍内套,通径满足后续作业需要,实现了固井后免钻免捞,并可通过调整皮碗封隔器尺寸实现不同复合尺寸套管筛管完井。该工艺在渤海湾海上合作区块的X井进行了现场试验,完成了φ177.8 mm尾管+φ139.7 mm筛管复合管柱的筛管顶部尾管注水泥固井作业,固井候凝后直接投产,无需钻塞,节约了钻机时间。Abstract: Top cementing technology with conventional screen pipes can combine advantages of the screen pipe and liner cementing, but internal accessories need to be removed upon completion of cementing operations. To improve the top cementing efficiency of the screen pipe, the internal and external pipe string structure was optimized with a rubber cup packer and a sliding sleeve staged collar. They were used to replace the blind plate and differential-pressure type staged collar in the top cementing with conventional screen pipe. The internal pipe string was moved to achieve setting, cementing, circulation and other process operations and all the residual accessories were brought out when the internal pipe string was lifted after cementing. Thus, the blind plate and staged collar would not be retained in the casing and the diameter could meet requirements for follow-up operation to avoid drilling and fishing after cementing. At the same time, screen pipe completion of different composite casings could be performed by adjusting the sizes of rubber cup packers. This technology has been used for field tests in Well X in the offshore cooperation block of Bohai Bay to complete top cementing operation with φ177.8 mm liner +φ139.7 mm screen pipe. The well can be directly put into production after waiting on cement setting. Without the need for plug drilling, the drilling time can be effectively minimized.
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Keywords:
- screen pipe /
- cementing /
- liner /
- drill-free plug
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[1] 徐可彬,尹爱春,顾维军.水平井选择性完井工艺[J].石油钻采工艺,1998,20(4):1-8.XU Kebin,YIN Aichun,GU Weijun.Selective completion technology for horizontal well[J].Oil DrillingProduction Technology,1998,20(4):1-8. [2] 熊友明,刘理明,张林,等.我国水平井完井技术现状与发展建议[J].石油钻探技术,2012,40(1):1-6.XIONG Youming,LIU Liming,ZHANG Lin,et al.Present status and development comments on horizontal well completion techniques in China[J].Petroleum Drilling Techniques,2012,40(1):1-6. [3] 梅明霞,周承诗,王威,等.胜利油田稠油油藏水平井防砂工艺技术及应用[J].钻采工艺,2008,31(4):47-48.MEI Mingxia,ZHOU Chengshi,WANG Wei,et al.Application of horizontal well sand control technology in heavy oil reservoir of Shengli Oilfield[J].DrillingProduction Technology,2008,31(4):47-48. [4] 宋开利.水平井分段采油工艺管柱[J].石油机械,2003,31(8):40-41.SONG Kaili.Section oil production pipe string of horizontal well[J].China Petroleum Machinery,2003,31(8):40-41. [5] 刘业文.水平井筛管顶部注水泥完井事故与复杂情况分析[J].西部探矿工程,2009,21(8),69-71.LIU Yewen.Analysis of screen top cementing completion accident and complex situation in horizontal well[J].West-China Exploration Engineering,2009,21(8):69-71. [6] 王兆会,陈嘉陵,王新东.HW9801水平井复杂情况的处理及分析[J].石油钻探技术,2006,34(3):81-83.WANG Zhaohui,CHEN Jialing,WANG Xindong.Drilling problems and solutions in horizontal Well HW9801[J].Petroleum Drilling Techniques,2006,34(3):81-83. [7] 杨海波,余金陵,魏新芳,等.水平井免钻塞筛管顶部注水泥完井技术[J].石油钻采工艺,2011,33(3):28-30.YANG Haibo,YU Jinling,WEI Xinfang,et al.Research on plug-drilling-free screen top cementing technology for horizontal well completion[J].Oil DrillingProduction Technology,2011,33(3):28-30. [8] 冯德杰,李国锋,赵勇.φ139.7 mm筛管顶部注水泥免钻塞固井完井技术[J].石油钻探技术,2014,42(5):131-134.FENG Dejie,LI Guofeng,ZHAO Yong.φ139.7 mm plug-drilling-free well cementing completion technology[J].Petroleum Drilling Techniques,2014,42(5):131-134. [9] 皇甫洁,张全胜,李文波.水平井筛管顶部注水泥技术的应用[J].钻采工艺,2007,30(4):161-162.HUANGFU Jie,Zhang Quansheng,Li Wenbo.Research and application of cementing technique on top screens in horizontal well[J].DrillingProduction Technology,2007,30(4):161-162. [10] 宋显民,张立民,李良川,等.水平井和侧钻水平井筛管顶部注水泥完井技术[J].石油学报,2007,28(1):119-121,126.SONG Xianmin,ZHANG Limin,LI Liangchuan,et al.Top screen pipe cementing technology of casing and liner in horizontal well and sidetracking horizontal well[J].Acta Petrolei Sinica,2007,28(1):119-121,126. [11] 聂翠平,李相方,刘贵喜,等.一种新型免钻塞分级注水泥接箍的研制与应用[J].钻采工艺,2012,35(3):57-59.NIE Cuiping,LI Xiangfang,LIU Guixi,et al.Development and application of a new undrilled dop stage cementing tool[J].DrillingProduction Technology,2012,35(3):57-59. [12] 秦金立,赵斌,阮臣良.系列新型双级注水泥器的设计与应用[J].石油钻探技术,2007,35(6):79-81.QIN Jinli,ZHAO Bin,RUAN Chenliang.Design and application of a novel two-stage cementing collar[J].Petroleum Drilling Techniques,2007,35(6):79-81. [13] 田启忠,李娜,刘建新,等.一种不钻塞完井分级注水泥器的研制及应用[J].石油机械,2013,41(4):82-85.TIAN Qizhong,LI Na,LIU Jianxin,et al.Development and application of a drilling plug-free staged cementer[J].China Petroleum Machinery,2013,41(4):82-85. [14] 齐月魁,单桂栋,曲庆利,等.水平井筛管完井快速钻塞工艺[J].石油钻采工艺,2009,31(6):56-60,63.QI Yuekui,SHAN Guidong,QU Qingli,et al.Fast plug-drilling technology for horizontal well completion[J].Oil DrillingProduction Technology,2009,31(6):56-60,63. [15] 魏海军.双级箍固井技术在固2井盐膏层中的应用[J].断块油气田,2006,13(2):62-64.WEI Haijun,Application of double-stage collar cementing technique in the gypsum beds of Well Gu 2[J].Fault-BlockGas Field,2006,13(2):62-64. [16] 严焱诚,薛丽娜,朱礼平,等.复合套管固井在川西水平井中的应用[J].天然气工业,2009,29(2):67-69.YAN Yancheng,XUE Lina,ZHU Liping,et al.Application of compound casing strings to horizontal wells cementing in West Sichuan Basin[J].Natural Gas Industry,2009,29(2):67-69. -
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