Drilling Technologies for Horizontal Wells with Ultra-Long Horizontal Section and Slim Hole in Changqing Oilfield
-
摘要: 针对长庆油田小井眼超长水平段水平井钻井施工中井眼轨迹控制困难、储层钻遇率低、机械钻速低、井壁易垮塌和易发生井漏等问题,分析了钻井技术难点,研究了旋转导向智能井眼轨迹控制技术、近钻头方位伽马成像技术和工程参数监测技术,进行了钻头选型优化,并研究应用纳米成膜封堵水基钻井液技术,形成了长庆油田小井眼超长水平段水平井钻井技术,能够精准控制井眼轨迹、提高储层钻遇率、保障井下安全和提高机械钻速。长庆油田桃XX井应用旋转导向技术及相关配套技术,安全高效地完成了水平段长4466 m、井深8008 m的钻井施工,储层钻遇率高达96.6%,创造了长庆油田井深最深、亚太区陆地水平段最长的纪录。研究结果表明,长庆油田小井眼超长水平段水平井钻井技术的现场应用效果良好,具有较好的推广应用价值。Abstract: Technical issues such as difficult wellbore trajectory control, low rate of drilling in formation, low ROP (rate of penetration), wellbore collapse, and circulation loss are easily encountered in the drilling of horizontal wells with ultra-long horizontal section and slim hole in Changqing Oilfield. In light of this, difficulties in drilling technologies were analyzed in this study and some key technologies were investigated, including intelligent wellbore trajectory control based on rotary steering, near-bit azimuthal gamma imaging, and engineering parameter monitoring. Moreover, bit selection was optimized and the application of sealing water-base drilling fluid by a formed nanometer film was studied. As a result, drilling technologies for horizontal wells with ultra-long horizontal section and slim hole in Changqing Oilfield were developed, which can enable accurate wellbore trajectory control, drilling ratio increase and ROP enhancement, and can ensure downhole safety. The rotary steering technology and related supporting technologies were applied to Well Tao XX in Changqing Oilfield, and drilling was completed safely and efficiently in a 4 466 m horizontal section at a depth of 8 008 m, with the drilling ratio of 96.6%. This created a new drilling record as the deepest well in Changqing Oilfield and the longest horizontal section on land in the Asia-Pacific region. Considering the good field application effect, the drilling technologies for horizontal wells with ultra-long horizontal section and slim hole in Changqing Oilfield are worthy of wide application.
-
-
[1] 李传武,兰凯,杜小松,等. 川南页岩气水平井钻井技术难点与对策[J]. 石油钻探技术,2020,48(3):16–21. doi: 10.11911/syztjs.2020055 LI Chuanwu, LAN Kai, DU Xiaosong, et al. Difficulties and countermeasures in horizontal well drilling for shale gas in Southern Sichuan[J]. Petroleum Drilling Techniques, 2020, 48(3): 16–21. doi: 10.11911/syztjs.2020055
[2] 高龙,王登治,翟小龙,等. 黄36井区油页岩段水平井快速钻井技术[J]. 石油钻采工艺,2015,37(4):20–22. GAO Long, WANG Dengzhi, ZHAI Xiaolong, et al. Fast drilling technology for horizontal wells in oil shale segment of Huang 36 Well Area[J]. Oil Drilling & Production Technology, 2015, 37(4): 20–22.
[3] 秦文政,党军,臧传贞,等. 玛湖油田玛18井区“工厂化” 水平井钻井技术[J]. 石油钻探技术,2019,47(2):15–20. doi: 10.11911/syztjs.2019025 QIN Wenzheng, DANG Jun, ZANG Chuanzhen, et al. Factorization drilling technology of the horizontal well in the Ma18 Well Block of the Mahu Oilfield[J]. Petroleum Drilling Techniques, 2019, 47(2): 15–20. doi: 10.11911/syztjs.2019025
[4] 于洋飞,杨光,陈涛,等. 新疆玛湖区块2 000 m长水平段水平井钻井技术[J]. 断块油气田,2017,24(5):727–730. YU Yangfei, YANG Guang, CHEN Tao, et al. Drilling technology of 2 km-long horizontal section in Mahu Block, Xinjiang Oilfield[J]. Fault-Block Oil & Gas Field, 2017, 24(5): 727–730.
[5] 路宗羽,赵飞,雷鸣,等. 新疆玛湖油田砂砾岩致密油水平井钻井关键技术[J]. 石油钻探技术,2019,47(2):9–14. doi: 10.11911/syztjs.2019029 LU Zongyu, ZHAO Fei, LEI Ming, et al. Key technologies for drilling horizontal wells in glutenite tight oil reservoirs in the Mahu Oilfield of Xinjiang[J]. Petroleum Drilling Techniques, 2019, 47(2): 9–14. doi: 10.11911/syztjs.2019029
[6] 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. doi: 10.11911/syztjs.2020029 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. doi: 10.11911/syztjs.2020029
[7] 汪海阁,白仰民,高振果,等. 小井眼环空压耗的室内试验研究[J]. 石油钻采工艺,1998,20(4):9–15, 108. WANG Haige, BAI Yangmin, GAO Zhenguo, et al. Laboratory study on pressure in annular of slim hole[J]. Oil Drilling & Production Technology, 1998, 20(4): 9–15, 108.
[8] 何卫滨,刘瀚宇,黄峰,等. 苏里格气田定向井井壁稳定性分析研究[J]. 石油地质与工程,2011,25(1):98–100. doi: 10.3969/j.issn.1673-8217.2011.01.028 HE Weibin, LIU Hanyu, HUANG Feng, et al. Analysis of borehole stability of directional well in Sulige Gas Field[J]. Petroleum Geology and Engineering, 2011, 25(1): 98–100. doi: 10.3969/j.issn.1673-8217.2011.01.028
[9] 韩来聚,牛洪波. 对长水平段水平井钻井技术的几点认识[J]. 石油钻探技术,2014,42(2):7–11. HAN Laiju, NIU Hongbo. Understandings on drilling technology for long horizontal section wells[J]. Petroleum Drilling Techniques, 2014, 42(2): 7–11.
[10] 李金平. 小井眼长水平段水平井摩阻扭矩分析方法研究[J]. 中外能源,2013,18(9):58–62. LI Jinping. Research on analytical method of friction and torque for horizontal well with long slim-hole horizontal section[J]. Sino-Global Energy, 2013, 18(9): 58–62.
[11] 李松林,苏义脑,董海平. 美国自动旋转导向钻井工具结构原理及特点[J]. 石油机械,2000,28(1):42–44. doi: 10.3969/j.issn.1001-4578.2000.01.014 LI Songlin, SU Yinao, DONG Haiping. Design features and characteristics of automatic steerable rotary drilling tools[J]. China Petroleum Machinery, 2000, 28(1): 42–44. doi: 10.3969/j.issn.1001-4578.2000.01.014
[12] 宁小军,星学平,蒲德柱. 旋转导向钻井技术在MDC-15井的应用[J]. 石油与化工设备,2011,14(5):23–26. NING Xiaojun, XING Xueping, PU Dezhu. Rotary steerable drilling wells in the application of MDC-15[J]. Petro & Chemical Equipment, 2011, 14(5): 23–26.
[13] 吴奇. 地质导向与旋转导向技术应用及发展[M]. 北京: 石油工业出版社, 2012. WU Qi. Application and development of geosteering and rotary steering technology[M]. Beijing: Petroleum Industry Press, 2012.
[14] 史配铭,薛让平,王学枫,等. 苏里格气田致密气藏水平井优快钻井技术[J]. 石油钻探技术,2020,48(5):27–33. doi: 10.11911/syztjs.2020083 SHI Peiming, XUE Rangping, WANG Xuefeng, et al. Optimized fast drilling technology for horizontal wells in the tight gas reservoirs in Sulige Gas Field[J]. Petroleum Drilling Techniques, 2020, 48(5): 27–33. doi: 10.11911/syztjs.2020083
[15] 郭瑞昌,刘匡晓,陶兴华,等. 大牛地水平井钻井提速技术[J]. 石油钻采工艺,2012,34(5):49–52. doi: 10.3969/j.issn.1000-7393.2012.05.013 GUO Ruichang, LIU Kuangxiao, TAO Xinghua, et al. Horizontal well penetration rate increasing technology in Daniudi area[J]. Oil Drilling & Production Technology, 2012, 34(5): 49–52. doi: 10.3969/j.issn.1000-7393.2012.05.013
[16] 董林芳,陈俊生,荆鹏,等. 新型钻井液用成膜封堵剂CMF的研制及应用[J]. 钻井液与完井液,2018,35(5):31–35. doi: 10.3969/j.issn.1001-5620.2018.05.006 DONG Linfang, CHEN Junsheng, JING Peng, et al. Development and application of a novel filming plugging agent CMF[J]. Drilling Fluid & Completion Fluid, 2018, 35(5): 31–35. doi: 10.3969/j.issn.1001-5620.2018.05.006
-
期刊类型引用(22)
1. 佘朝毅. 四川盆地深层页岩气钻井关键技术新进展及发展展望. 天然气工业. 2024(03): 1-9 . 百度学术
2. 路智勇,刘莉,姜宇玲,张谦,湛小红,肖佳林. 涪陵气田立体开发地质工程一体化实践. 中国石油勘探. 2024(03): 10-20 . 百度学术
3. 王能,邹亚平,田秀明. 工程地质一体化在宁XX-3井的应用. 西部探矿工程. 2023(01): 79-81 . 百度学术
4. 王维,韩金良,王玉斌,杨干,苗强,辛江,李猛. 大宁-吉县区块深层煤岩气水平井钻井技术. 石油机械. 2023(11): 70-78 . 百度学术
5. 付强. 四川盆地页岩气超长水平段水平井钻井实践与认识. 钻采工艺. 2022(04): 9-18 . 百度学术
6. 张益,卜向前,齐银,杨永智,陈亚舟,侯晓云,王瑞,张斌,同松. 鄂尔多斯盆地姬塬油田长7段页岩油藏地质工程一体化油藏开发对策——以安83井区为例. 中国石油勘探. 2022(05): 116-129 . 百度学术
7. 陈更生,吴建发,刘勇,黄浩勇,赵圣贤,常程,钟成旭. 川南地区百亿立方米页岩气产能建设地质工程一体化关键技术. 天然气工业. 2021(01): 72-82 . 百度学术
8. 陆自清. 基于卡尔曼滤波的动态地质模型导向方法. 石油钻探技术. 2021(01): 113-120 . 本站查看
9. 孙焕泉,周德华,蔡勋育,王烽,冯动军,卢婷. 中国石化页岩气发展现状与趋势. 中国石油勘探. 2020(02): 14-26 . 百度学术
10. 陈四平,谭判,石文睿,赵红燕. 涪陵页岩气优质储层测井综合评价方法. 石油钻探技术. 2020(04): 131-138 . 本站查看
11. 张合文,崔明月,张宝瑞,赫安乐,晏军,梁冲,郭双根,贾洪革,马良. 低渗透薄层难动用边际油藏地质工程一体化技术——以滨里海盆地Zanazour油田为例. 中国石油勘探. 2019(02): 203-209 . 百度学术
12. 郑述权,谢祥锋,罗良仪,景洋,唐梦,杨瑞帆,钟广荣,王军,陈正云. 四川盆地深层页岩气水平井优快钻井技术——以泸203井为例. 天然气工业. 2019(07): 88-93 . 百度学术
13. 岳砚华,伍贤柱,张庆,赵晗,姜巍. 川渝地区页岩气勘探开发工程技术集成与规模化应用. 天然气工业. 2018(02): 74-82 . 百度学术
14. 屈华业. 外围油田钻井地质分层设计方法研究. 西部探矿工程. 2018(08): 53-54+56 . 百度学术
15. 罗鑫,张树东,王云刚,简利,张德军. 昭通页岩气示范区复杂地质条件下的地质导向技术. 钻采工艺. 2018(03): 29-32+6-7 . 百度学术
16. 吴宝玉,夏宏泉,阳大祥,王孝忠,王勇. 多学科结合地质导向技术在川东复杂地层中的应用. 国外测井技术. 2018(04): 8-11 . 百度学术
17. 郑杰. 四川盆地长宁地区页岩气井压裂效果影响因素分析及对策研究. 重庆科技学院学报(自然科学版). 2017(03): 1-6 . 百度学术
18. 顾林元. 页岩气水平井轨迹导向物探技术方法. 江汉石油科技. 2017(02): 40-43 . 百度学术
19. 章敬,罗兆,徐明强,江洪,陈仙江,王腾飞,罗洪. 新疆油田致密油地质工程一体化实践与思考. 中国石油勘探. 2017(01): 12-20 . 百度学术
20. 王昕,杨斌,王瑞. 吐哈油田低饱和度油藏地质工程一体化效益勘探实践. 中国石油勘探. 2017(01): 38-45 . 百度学术
21. 吴宗国,梁兴,董健毅,李兆丰,张朝,王高成,高阳,李峋. 三维地质导向在地质工程一体化实践中的应用. 中国石油勘探. 2017(01): 89-98 . 百度学术
22. 杨远,何幼斌,罗进雄. 基于复合数学模型的致密油地质工程一体化开采理念与路线. 中外能源. 2017(07): 27-35 . 百度学术
其他类型引用(12)