新疆石油地质 ›› 2025, Vol. 46 ›› Issue (4): 505-511.doi: 10.7657/XJPG20250415

• 应用技术 • 上一篇    下一篇

顺北超深层断控缝洞型气藏气井合理产能确定方法

于腾飞(), 皇甫静静(), 陈志辉, 王虹   

  1. 中国石化 西北油田分公司 勘探开发研究院,乌鲁木齐 830011
  • 收稿日期:2025-01-22 修回日期:2025-02-05 出版日期:2025-08-01 发布日期:2025-07-25
  • 通讯作者: 皇甫静静 E-mail:yutf.xbsj@sinopec.com;hf0991@126.com
  • 作者简介:于腾飞(1982-),男,四川成都人,副研究员,硕士,油气规划及经济评价,(Tel)0991-3160028(Email)yutf.xbsj@sinopec.com
  • 基金资助:
    国家自然科学基金企业创新发展联合基金(U19B6003)

Methods of Reasonable Productivity Determination for Ultra-Deep Fault-Controlled Fractured-Vuggy Gas Reservoirs in Shunbei Area

YU Tengfei(), HUANGFU Jingjing(), CHEN Zhihui, WANG Hong   

  1. Research Institute of Exploration and Development, Northwest Oilfield Company, Sinopec, Urumuqi, Xinjiang 830011, China
  • Received:2025-01-22 Revised:2025-02-05 Online:2025-08-01 Published:2025-07-25
  • Contact: HUANGFU Jingjing E-mail:yutf.xbsj@sinopec.com;hf0991@126.com

摘要:

塔里木盆地顺北超深层断控缝洞型气藏是天然气增储上产的重要阵地,确定气井合理产能对气藏的高效开发至关重要。顺北超深层断控缝洞型气藏储集层非均质性及应力敏感性强,物性差异大,需优化常规合理产能方法。结合地质与动态资料,顺北超深层断控缝洞型气藏F1条带可分为断裂+洞穴型储集体、断裂+孔洞型储集体和断裂/裂缝型储集体3类。高压气藏气井二项式产能方程表明断裂+洞穴型储集体无阻流量最大,断裂+孔洞型储集体次之,断裂/裂缝型储集体最小。产能试井法试井曲线表现为直线形、上翘形和下凸形,直线形和上翘形曲线合理油嘴均为测试范围内最大油嘴,下凸形曲线合理油嘴为拐点对应油嘴。压降法显示在测试范围内,断裂+洞穴型储集体合理油嘴越大越好,断裂+孔洞型储集体和断裂/裂缝型储集体合理油嘴越小越好。

关键词: 塔里木盆地, 超深层, 断控缝洞型气藏, 合理产能, 产能试井法, 压降法

Abstract:

The ultra-deep fault-controlled fractured-vuggy gas reservoirs in the Tarim Basin represent a principal option for increasing gas reserves and production. It is crucial to determine the reasonable productivity of gas wells for the efficient development of gas reservoirs. Shunbei ultra-deep fault-controlled fractured-vuggy gas reservoir is characterized by strong heterogeneity, high stress sensitivity, and varying physical properties, therefore, conventional methods for determining reasonable productivity of the reservoir need to be improved. Based on geological and production data, the reservoirs in the F1 zone of the Shunbei gas reservoir can be divided into three types: fault + cavity, fault + pore, and fault/fracture. According to the calculation by the binomial productivity equation for wells in high-pressure gas reservoirs, the fault + cavity reservoir show the highest absolute open flow potential (AOFP), followed by the fault + pore reservoir, and then the fault/fracture reservoir. The productivity test curves show 3 shapes such as linear, upward curved, and downward convex, with the reasonable choke as the largest choke within the testing range for the former two shapes, and as the choke at the inflection for the downward convex shape. The pressure drop method shows that, within the testing range, a larger reasonable choke is preferred for the fault + cavity reservoir, and a smaller reasonable choke for the fault + pore and fault/fracture reservoirs.

Key words: Tarim Basin, ultra-deep stratum, fault-controlled fractured-vuggy gas reservoir, reasonable productivity, productivity test method, pressure drop method

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