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顺北油田S井超深超高温碳酸盐岩断溶体油藏大型酸压关键技术
引用本文:李新勇,李骁,赵兵,王琨,苟波. 顺北油田S井超深超高温碳酸盐岩断溶体油藏大型酸压关键技术[J]. 石油钻探技术, 2022, 50(2): 92-98. DOI: 10.11911/syztjs.2021068
作者姓名:李新勇  李骁  赵兵  王琨  苟波
作者单位:1.中国石化缝洞型油藏提高采收率重点实验室,新疆乌鲁木齐 830011
基金项目:中国石化科技攻关项目“顺北超深断溶体油藏高效酸压技术研究”(编号:P20064-3)资助
摘    要:顺北油田S井目的层属于典型的超深超高温断溶体储层,工程地质条件和井筒条件复杂,酸压改造面临巨大挑战.针对上述酸压改造难点,提出了"回填井段集中改造+酸损伤降破+管柱浅下+加重压裂液组合提排量+前置液造缝+交替注入造高导流裂缝+自生酸疏通远端断溶体"的复合酸压技术,通过试验优选了超高温工作液体系,包括180℃聚合物压裂液...

关 键 词:超深井  超高温  断溶体油藏  大型酸压  顺北油田
收稿时间:2020-12-21

Key Technologies for Large-Scale Acid Fracturing of Ultra-Deep Fault-Karst Carbonate Reservoirs with Ultra-High Temperature for Well S in Shunbei Oilfield
Affiliation:1.Sinopec Key Laboratory of Enhanced Oil Recovery for Fractured Vuggy Reservoirs, Urumqi, Xinjiang, 830011, China2.Petroleum Engineering School, Southwest Petroleum University, Chengdu, Sichuan, 610500, China
Abstract:The target formation of Well S in Shunbei Oilfield is a typical ultra-deep fault-karst carbonate reservoir. Due to the complex engineering and geological conditions and wellbore conditions, acid fracturing is confronted with great challenges. In light of above difficulties in reservoir stimulation, a set of compound acid fracturing technologies was proposed by "centralized treatment by backfilling + acid damage to reduce fracture pressure + shallow pipe string + flow rate increase by weighted fracturing fluid + pad fluid fracturing + alternative injection for high conductivity fracture + autogenous acid to connect the far fault-karst". A set of acid fracturing fluid systems was optimized for resistance to ultra-high temperature by tests, included polymer fracturing fluid at 180 ℃, weighted guar gum fracturing fluid at 160 ℃, crosslinking acid at 160 ℃, and autogenous acid. Then, an optimized large-scale acid fracturing treatment plan was made based on recommendations for working fluid scales by numerical simulation. The recommended scale of fracturing fluid was 1 000–1 200 m3 and the scale of acid fluid was 800–1 000 m3. The field test showed a significant decrease in the wellhead pressure with weighted fracturing fluid, which was 7% lower than that with polymer fracturing fluid under the same injection rate. After the large-scale acid fracturing of Well S, the test production of natural gas was 10.45 × 104 m3/d, which made a breakthrough in the exploration of the Shunbei No. 4 fault zone and provided valuable guidance for the large-scale acid fracturing design of similar reservoirs. 
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