新疆石油地质 ›› 2025, Vol. 46 ›› Issue (4): 448-456.doi: 10.7657/XJPG20250407

• 油藏工程 • 上一篇    下一篇

顺北油田超深断控挥发性油藏高效开发政策

任文博1,2(), 刘迪仁1, 李小波2, 曹飞2, 刘学利2, 代金城2   

  1. 1.长江大学 地球物理与石油资源学院,武汉 430100
    2.中国石化 西北油田分公司 a.勘探开发研究院;b.碳酸盐岩缝洞型油藏提高采收率实验室,乌鲁木齐 830011
  • 收稿日期:2025-01-02 修回日期:2025-02-05 出版日期:2025-08-01 发布日期:2025-07-25
  • 作者简介:任文博(1981-),男,湖北汨罗人,教授级高级工程师,博士研究生,油气田开发,(Tel)0991-3166329(Email)renwb.xbsj@sinopec.com
  • 基金资助:
    中国石化科技攻关项目(P24088);中国石化科技攻关项目(P23184)

Efficient Development Strategy for Ultra-Deep Fault-Controlled Volatile Reservoirs in Shunbei Oilfield

REN Wenbo1,2(), LIU Diren1, LI Xiaobo2, CAO Fei2, LIU Xueli2, DAI Jincheng2   

  1. 1. School of Geophysics and Petroleum Resources, Yangtze University, Wuhan, Hubei 430100, China
    2. Sinopec Northwest Oilfield Company, a. Research Institute of Exploration and Development; b.Key Laboratory of Enhanced Oil Recovery in Fractured-Vuggy Carbonate Reservoirs, Urumqi, Xinjiang 830011, China
  • Received:2025-01-02 Revised:2025-02-05 Online:2025-08-01 Published:2025-07-25

摘要:

顺北油田超深断控挥发性油藏埋深大,厚度大,呈板状分布,开发过程中天然能量弱,能量和产量递减快。早期实践表明,快速注水和大排量注气容易导致井间高导流通道窜进,影响驱替效率和波及范围。提出气水复合立体注采模式,即以注水为主、注天然气为辅的复合驱替补能方式,构建水驱低注高采、气驱高注低采注采关系,建立注水注气复合立体注采井网。注水动用井间未波及剩余油、井周中—下部未动用剩余油,天然气驱替顶部阁楼型剩余油,提高驱替效率,扩大波及范围,实现油藏长期能量稳定。基于该技术政策指导典型气水复合驱单元,预测可提高采收率26.0%,地层压力恢复9.0 MPa,气油比下降至820 m3/t,流压恢复至45 MPa。

关键词: 顺北油田, 碳酸盐岩, 断控, 挥发性油藏, 气水复合注采, 开发技术政策

Abstract:

The ultra-deep fault-controlled volatile reservoirs in Shunbei oilfield are characterized by great burial depth, significant thickness, and tabular distribution, with weak natural energy and rapid decline in both pressure and production during development. Early practice revealed that rapid water injection and high-rate gas injection tend to induce channeling through high-conductivity pathways between wells, compromising displacement efficiency and sweep volume. This paper presents a 3D composite gas-water injection-production strategy. To be specific, water injection is supplemented with gas injection for energy replenishment, so that injector-producer patterns are established with injecting water at lower position and producing oil from higher position, and injecting gas into higher position and producing oil from lower position, forming a 3D well pattern for composite gas-water injection and production. Water injection targets the unswept oil between wells and in middle-lower zones around wellbores, while gas injection displaces the oil at the top, thereby enhancing displacement efficiency and expanding sweep volume to ensure a long-term energy stability of the reservoir. Guided by this strategy, a typical composite gas-water drive unit is projected to enhance oil recovery by 26.0%, restore reservoir pressure by 9.0 MPa, reduce the gas-oil ratio to 820 m3/t, and increase flowing pressure to 45 MPa.

Key words: Shunbei oilfield, carbonate rock, fault-controlled, volatile reservoir, composite gas-water injection and production, development strategy

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