Decompression and Augmented Injection Technology with Polybasic Recombination Acid for Chang-6 Ultra-Low Permeability Reservoir in Honghe Oilfield
-
摘要: 红河油田长6特低渗油藏近年来通过注水开发减缓了产量递减,但还存在注水井注入压力高、欠注甚至注不进水的问题,地层能量无法得到有效补充。分析认为,长6特低渗油藏注水井欠注的主要原因是自身储层物性差、渗透率低、孔喉半径小,其次是注入水与地层水不配伍、结垢,加之注水过程中黏土膨胀运移等进一步降低了储层的渗透率。为此,提出利用多元复合酸酸化技术来解决该油藏的注水井欠注问题。酸液配伍性、腐蚀速率及岩心的溶蚀速率等室内试验结果表明,多元复合酸与该油藏的注入水、地层水配伍性良好,具有腐蚀率小、黏土膨胀率低、岩心溶蚀慢的特点。8口井的现场应用结果表明,多元复合酸酸化技术能够解除注水井近井地带的污染,恢复、提高地层渗透率,达到降压增注的目的。Abstract: In recent years, Chang-6 ultra-low permeability reservoir of Honghe Oilfield has reduced production decline by means of water injection, but there are also problems of high water injection pressure, insufficient injection and even water injection failure, the formation energy can not be replenished effectively. The analysis showed that the main causes for insufficient injection in Chang-6 ultra-low permeability reservoir were poor reservoir properties, low permeability and small pore throat radius; the secondary causes were not compatible with injected water and formation water as well as scale formation. Additionally, clay swelling and migration in the water injection process could also reduce the reservoir permeability. In order to solve the insufficient injection problem in the reservoir, the polybasic recombination acid technology has been introduced. Laboratory test results showed that the polybasic recombination acid was highly compatible with injected water and formation water, and it could provide low corrosion rate and clay swelling rate, and keep slow rate of core dissolution. According to field applications in eight wells, the polybasic recombination acid technology can eliminate pollution near water injection well, restore and improve formation permeability to achieve decompression and augmented injection.
-
-
[1] 张哨楠,胡江柰,沙文武,等.鄂尔多斯盆地南部镇泾地区延长组的沉积特征[J].矿物岩石,2000,20(4):25-30.ZHANG Shaonan,HU Jiangnai,SHA Wenwu,et al.The sedimentary characteristics of Yanchang Formation in Zhenyuan and Jingchuan Districts,southern part of Ordos Basin[J].Journal of Mineralogy and Petrology,2000,20(4):25-30. [2] 万旸璐,段福海,杨哲.鄂尔多斯盆地镇泾地区长6、长8储层物性对比研究[J].石油地质与工程,2012,26(2):14-15,30.WAN Yanglu,DUAN Fuhai,YANG Zhe.The comparative study of the physical properties on Chang 6,Chang 8 Reservoir in Zhenjing Area of Erdos Basin[J].Petroleum Geology and Engineering,2012,26(2):14-15,30. [3] 杨静,宋友贵,孙连杰,等.大港低孔低渗油田欠注井治理对策研究[J].石油地质与工程,2013,27(3):134-135,138.YANG Jing,SONG Yougui,SUN Lianjie,et al.Countermeasures research on under injection wells in low porosity and permeability Dagang Oilfield[J].Petroleum Geology and Engineering,2013,27(3):134-135,138. [4] DETIENNE J L,DANQUIGNY J,LACOURIE Y,et al.Produced water re-injection on a low permeability carbonaceous reservoir[R].SPE 78482,2002.
[5] 薛婷,肖波,刘云飞,等.姬塬油田黄3长8油藏欠注井治理对策[J].石油钻采工艺,2014,36(3):100-102.XUE Ting,XIAO Bo,LIU Yunfei,et al.Research on countermeasures for insufficient injectors of Huang-3 Chang-8 Reservoir of Jiyuan Oilifeld[J].Oil DrillingProduction Technology,2014,36(3):100-102. [6] 赖南君,叶仲斌,陈洪,等.低张力体系改善低渗透油藏水驱渗流特征实验[J].石油与天然气地质,2007,28(4):520-522.LAI Nanjun,YE Zhongbin,CHEN Hong,et al.Experiment of low-tension system for improving percolation behaviors in waterflooding low-permeability reservoirs[J].OilGas Geology,2007,28(4):520-522. [7] 达引朋,陆红军,杨博丽,等.低渗透老油田新型多缝重复压裂技术研究与应用[J].石油钻探技术,2015,43(3):65-70.DA Yinpeng,LU Hongjun,YANG Boli,et al.Research and application of new refracturing technology in low permeability oilfield[J].Petroleum Drilling Techniques,2015,43(3):65-70. [8] 王文环,彭缓缓,李光泉,等.长庆特低渗透油藏注水动态裂缝及井网加密调整模式研究[J].石油钻探技术,2015,43(1):106-110.WANG Wenhuan,PENG Huanhuan,LI Guangquan,et al.Research on water flooding dynamic fractures to optimize infill drilling spacing in ultra-low permeability reservoirs,Changqing Oilfield[J].Petroleum Drilling Techniques,2015,43(1):106-110. [9] 刘清华.纯油区东部欠注井的成因与治理[J].化学工程与装备,2014(1):79-80,90.LIU Qinghua.Cause analysis and countermeasures research on under injection wells in the eastern pure oil zone[J].Chemical EngineeringEquipment,2014(1):79-80,90. [10] ABOU-SAYED A S,ZAKI K S,WANG G G,et al.A mechanistic model for formation damage and fracture propagation during water injection[R].SPE 94606,2005.
[11] 王宝峰,许志赫,阚淑华,等.渤南油田高温注水井欠注层伤害机理研究[J].钻井液与完井液,2003,20(3):31-34.WANG Baofeng,XU Zhihe,KAN Shuhua,et al.The study on damage mechanism in high temperature water-injection wells of Bonan Oilfield[J].Drilling FluidCompletion Fluid,2003,20(3):31-34. [12] 陈华兴,刘义刚,唐洪明,等.绥中36-1油田注入井欠注原因及治理建议[J].特种油气藏,2011,18(3):129-131.CHEN Huaxing,LIU Yigang,TANG Hongming,et al.Cause of insufficient injection and remedial measures for injectors in the SZ36-1 Oilfield[J].Special OilGas Reservoirs,2011,18(3):129-131. [13] 甘树明,李影,姚振,等.宝浪油田低渗储层欠注井增注技术研究与应用[J].石油地质与工程,2008,22(4):104-106.GAN Shuming,LI Ying,YAO Zhen,et al.Study and application on augmented injection technique in short shot well of low permeability reservoir in Baolang Oilfield[J].Petroleum Geology and Engineering,2008,22(4):104-106. [14] 郝斐,杨江朝,汪伟英,等.双河油田注入水适应性及注水井酸化解堵研究[J].油田化学,2006,23(3):218-222.HAO Fei,YANG Jiangchao,WANG Weiying,et al.Injection water adaptability and acidizing fluids for reservoir damage removal in water injection wells in Shuanghe Oil Fields[J].Oilfield Chemistry,2006,23(3):218-222. [15] BARKMAN J,DAVIDSON D.Measuring water quality and predicting well impairment[J].Journal of Petroleum Technology,1972,24(7):865-873.
-
期刊类型引用(34)
1. 纪照生,袁国栋,晁文学,蒋金宝,白旺东. 塔里木盆地超深小井眼定向钻井提速提效关键技术. 石油钻探技术. 2024(04): 8-14 . 本站查看
2. 刘彪,潘丽娟,王沫. 顺北油气田二区断控体油气藏井身结构设计及配套技术. 断块油气田. 2023(04): 692-697 . 百度学术
3. 邱春阳,张翔宇,朱福军,秦涛,王智,温守云. 超深水平井钾胺盐抗高温防塌钻井液技术. 精细石油化工进展. 2023(04): 1-5 . 百度学术
4. 王龙,方静,董秀民,王金树,方俊伟,耿云鹏,张建军,徐同台. 储层友好型钻井液用超微四氧化三锰. 钻井液与完井液. 2023(04): 467-474 . 百度学术
5. 伍兴东. 顺北油田特深井裸眼坍塌处理工艺技术与应用. 内蒙古石油化工. 2022(04): 88-90 . 百度学术
6. 李科,赵怀珍,李秀灵,周飞. 抗高温高性能水基钻井液及其在顺北801X井的应用. 钻井液与完井液. 2022(03): 279-284 . 百度学术
7. 刘湘华,刘彪,杜欢,王沫. 顺北油气田断裂带超深水平井优快钻井技术. 石油钻探技术. 2022(04): 11-17 . 本站查看
8. 陈宗琦,刘湘华,白彬珍,易浩. 顺北油气田特深井钻井完井技术进展与发展思考. 石油钻探技术. 2022(04): 1-10 . 本站查看
9. 王萍,樊佳勇,韩成福,王亮,屈展,黄海,顾甜利. 苏里格气田区小井眼二开水平井优化设计. 科学技术与工程. 2022(28): 12349-12354 . 百度学术
10. 张建龙,李瑞刚,温炜,张洪宁,殷子横. 提高MWD仪器在特深小井眼水平井测量可靠性的方法. 石油钻采工艺. 2022(04): 430-435+443 . 百度学术
11. 杨静,涂福洪,霍如军,陶瑞东,尚子博,郭亮. 苏里格南区块小井眼钻井关键技术. 石油钻探技术. 2021(01): 22-27 . 本站查看
12. 邱春阳,张翔宇,赵红香,王雪晨,张海青,陈二丁. 顺北区块深层井壁稳定钻井液技术. 天然气勘探与开发. 2021(02): 81-86 . 百度学术
13. 赵建军,崔晓杰,曹海涛,赵晨熙. 高频液力扭转冲击钻井提速工具设计与分析. 机床与液压. 2021(14): 84-88 . 百度学术
14. 孔丽姝,路清华,何毓新,顾忆,孙永革. 塔里木盆地顺北地区深部油藏轻烃地球化学特征及其指示意义. 地球化学. 2021(03): 261-272 . 百度学术
15. 杨军义,王西江. 顺北区块火成岩侵入体井壁稳定分析及对策. 内蒙古石油化工. 2021(10): 54-56+86 . 百度学术
16. 翟科军,于洋,刘景涛,白彬珍. 顺北油气田火成岩侵入体覆盖区超深井优快钻井技术. 石油钻探技术. 2020(02): 1-5 . 本站查看
17. 孙明光. 顺北油田超深小井眼水平井定向钻井技术. 钻采工艺. 2020(02): 19-22+1-2 . 百度学术
18. 刘彪,张俊,王居贺,李文霞,李少安. 顺北油田含侵入岩区域超深井安全高效钻井技术. 石油钻采工艺. 2020(02): 138-142 . 百度学术
19. 王建云,杨晓波,王鹏,范红康. 顺北碳酸盐岩裂缝性气藏安全钻井关键技术. 石油钻探技术. 2020(03): 8-15 . 本站查看
20. 于洋,李双贵,高德利,李光乔. 顺北5-5H超深?120.65 mm小井眼水平井钻井技术. 石油钻采工艺. 2020(03): 276-281 . 百度学术
21. 刘彪,许瑞,王居贺,闫铁,孙文峰,邵阳. 基于改进的主成分分析法的钻头优选评价模型. 石油机械. 2020(09): 8-14 . 百度学术
22. 唐洪林,孙荣华. 永3-侧平1深层小井眼侧钻水平井钻井技术. 科技创新与应用. 2019(06): 147-148+150 . 百度学术
23. 乔浩,殷会鹏,袁君. 小井眼快优钻井关键技术研究. 化工管理. 2019(10): 77 . 百度学术
24. 刘彪,潘丽娟,王圣明,李小爱,李双贵. 顺北油气田超深井井身结构系列优化及应用. 石油钻采工艺. 2019(02): 130-136 . 百度学术
25. 康鹏,李琰,戴永鹏,贾利春,寇明. 哈拉哈塘Ф104.8 mm小井眼超深定向井难点分析及改进方向. 钻采工艺. 2019(03): 122-124 . 百度学术
26. 邹书强,张红卫,伊尔齐木,李翔. 顺北一区超深井窄间隙小尾管固井技术研究. 石油钻探技术. 2019(06): 60-66 . 本站查看
27. 赵建军,崔晓杰,赵晨熙,胡亮,尹慧博,马兰荣. 高频液力扭力冲击器设计与试验研究. 石油化工应用. 2018(02): 5-10 . 百度学术
28. 李亚南,于占淼,晁文学,孔华,王安广. 顺北评2H超深小井眼侧钻水平井技术. 石油钻采工艺. 2018(02): 169-173 . 百度学术
29. 李云峰,徐吉,徐小峰,朱宽亮,吴艳. 南堡2号构造深层潜山水平井钻井完井技术. 石油钻探技术. 2018(02): 10-16 . 本站查看
30. 陈养龙,席宝滨,晁文学,朱伟厚. 顺北区块Ⅰ号断裂带钻井分层提速技术. 断块油气田. 2018(05): 649-652 . 百度学术
31. 张晓广. 伊拉克米桑油田深井水平井钻井技术. 探矿工程(岩土钻掘工程). 2018(11): 24-28 . 百度学术
32. 张俊,徐珊,张进双,孙连忠,徐江. 巴楚隆起夏河区块风险探井钻井优化设计. 断块油气田. 2017(03): 417-420 . 百度学术
33. 赵志国,白彬珍,何世明,刘彪. 顺北油田超深井优快钻井技术. 石油钻探技术. 2017(06): 8-13 . 本站查看
34. 查春青,柳贡慧,李军,李玉梅,席岩,连威. 复合冲击钻具的研制及现场试验. 石油钻探技术. 2017(01): 57-61 . 本站查看
其他类型引用(5)
计量
- 文章访问数: 3664
- HTML全文浏览量: 81
- PDF下载量: 4438
- 被引次数: 39