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北特鲁瓦底水油藏水平井分段酸压技术应用研究
Application & Study of Acid Fracturing Technology of Sectional Horizontal Well on Bottom Water Reservoir in North Troy

DOI: 10.12677/AG.2021.115057, PP. 614-623

Keywords: 北特鲁瓦,底水,连续油管,水力喷射,多级交替注入
North Truva Oilfield
, Bottom Water Reservoir, Coiled Tubing, Hydraulic Injection,Multi-Stage Alternating Injection

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Abstract:

北特鲁瓦油田是岩性–构造双重控制的多断块边底水油气藏,具有低孔低渗、地层压力低、易压窜底水层等改造难题。通过对该油田多井开采层含水变化情况进行分析,得出油水预测界面,对比以往安全压裂改造规模与油水纵向距离间的关系,结合地应力解释和裂缝模拟等深入研究,最后针对H817井提出连续油管水力喷砂射孔环空酸压工艺改造方案,酸化和酸压同井实施,同时采用水力喷射、组合酸、多级交替注入等集成技术模式,顺利完成14段酸化作业,取得了多项成果,如区域内相同段数规模下施工周期最短,施工后自喷生产,日产液过百方,日产气过万方。该井解决方案解决了多项改造难题,为同类井提供了技术参考。
North Trova oilfield is a multi-fault block edge and bottom water reservoir controlled by lithology and structure, which has some difficult problems, such as low porosity and low permeability, low formation pressure, easy pressure channeling bottom water layer and so on. Through the analysis of the water cut change of the multi-well production layer in the oil field, the oil-water prediction interface is obtained, and the relationship between the previous safe fracturing transformation scale and the oil-water vertical distance is compared, combined with in-depth study of in-situ stress interpretation and fracture simulation. Finally, the modification scheme of coiled tubing hydraulic sandblasting perforation annular acid fracturing process is put forward for H817 well, and acidizing and acid fracturing are carried out in the same well. At the same time, the integrated technical modes such as hydraulic injection, combined acid and multi-stage alternating injection were adopted, and 14 sections of acidizing operation were successfully completed, and a number of achievements were obtained, such as the shortest construction period under the same number of sections in the region, self-spraying production after construction, daily production of more than 100 square meters of liquid, daily production of gas of more than ten thousand square meters. The solution of this well solves a number of reconstruction problems and provides a technical reference for similar wells.

References

[1]  张群双, 李民, 张佩波. 静52-H1Z井分段布酸酸化技术[J]. 石油钻采工艺, 2014(3): 79-81.
[2]  杨晓莉, 颜晋川. 河坝嘉二气藏衬管完井及分流酸化技术[J]. 油气井测试, 2021, 30(1): 41-45.
[3]  雷林, 张龙胜, 熊炜. 渝东南地区茅口组气藏大石1HF井酸压工艺技术研究[J]. 油气藏评价与开发, 2020, 10(5): 84-90.
[4]  艾昆, 贾光亮, 张会师, 等. 水平井分段转向酸酸化压裂技术[J]. 特种油气藏, 2014, 21(3): 148-150.
[5]  储铭汇, 何青, 陈付虎, 等. 大牛地气田下古生界碳酸盐岩气藏水平井固井完井及改造方式优化探讨[J]. 石油地质与工程, 2017, 31(3): 114-117.
[6]  龚蔚. 深层裂缝型碳酸盐岩油藏水平井水力喷射酸压技术[J]. 断块油气田, 2020, 27(6): 808-811.
[7]  戴勇, 郝力博, 康克利, 等. 北特鲁瓦油田H814井钻完井及储层改造一体化设计及应用[J]. 新疆石油天然气, 2017, 13(1): 45-48.
[8]  王天祥, 宋会光, 林宣义, 等. 酸化压裂技术在北特鲁瓦油田的应用[J]. 中国石油和化工, 2016, 1(S1): 291-288.
[9]  王涛, 赵兵, 曲占庆, 等. 塔河老区井周弱势通道暂堵酸压技术[J]. 断块油气田, 2019, 26(6): 794-799.
[10]  郭建春, 苟波, 秦楠, 等. 深层碳酸盐岩储层改造理念的革新——立体酸压技术[J]. 天然气工业, 2020, 40(2): 61-74.
[11]  宋志峰, 胡雅洁, 吴庭新. 水平井无工具分段酸压方法在塔河油田的应用[J]. 新疆石油地质, 2016(6): 738-740.
[12]  埃克诺米德斯, 张保平. 油藏增产措施[M]. 第3版. 北京: 石油工业出版社, 2002.
[13]  张宝露, 张敏, 李维锋, 等. 滨里海盆地北特鲁瓦油田上石炭统碳酸盐岩沉积相研究与有利储层预测[J]. 科学技术与工程, 2015, 15(12): 34-43.
[14]  申贝贝, 何青, 陈付虎, 等. 大牛地气田下古生界气藏裸眼水平井分段酸压效果影响因素分析[J]. 天然气勘探与开发, 2015, 38(4): 44-47.
[15]  陈志海, 戴勇. 深层碳酸盐岩储层酸压工艺技术现状与展望[J]. 石油钻探技术, 2005(1): 58-62.
[16]  丁柯宇, 冯强, 陈保山, 等. 超深水平井分段酸化压裂增产措施研究[J]. 辽宁化工, 2018, 47(9): 911-913.

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