缝洞型碳酸盐岩凝析气藏提高采收率技术

IF 4.2 3区 工程技术 Q2 ENERGY & FUELS
Hedong Sun , Shiyin Li , Zhiliang Liu , Baohua Chang , Chunguang Shen , Wen Cao
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引用次数: 1

摘要

我国海相碳酸盐岩资源丰富,以缝洞型碳酸盐岩油气藏为主,探明储量占总储量的三分之二以上。塔里木盆地缝洞型碳酸盐岩凝析气藏埋藏深度4500~7000m,具有储层非均质性极强、储层渗流介质复杂多样、流体性质复杂、静态表征难度较大的特点,给储量评价带来了诸多挑战,开发计划设计和性能分析。为了提高这类油气藏的采收率,本文采用动态表征来补充静态表征,并相互结合以提高精度。此外,在多年动态和静态研发实践的基础上,创新开发了缝洞型碳酸盐岩凝析气藏的关键强化采气技术,如以地震反演信息为基础、以三维数值试井为核心的沙漠强衰减区缝洞体动静态迭代的高精度动态表征技术、提高缝洞凝析气藏储量的一井多目标三维开发技术等,以及用于裂缝性溶洞凝析气藏的气举减压EGR技术。综上所述,该技术体系较好地解决了裂缝性溶洞体精细表征、提高储量、降低废弃压力等关键难点。实现了裂缝带、羽毛状裂缝带精细储层表征和关键开发指标的准确预测,有效井、高效井部署成功率较大规模产能建设初期提高26%。综上所述,这些技术为缝洞型碳酸盐岩凝析气藏的科学高效开发提供了强有力的技术支撑和参考经验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EOR technologies for fractured-vuggy carbonate condensate gas reservoirs

There are abundant marine carbonate rock resources in China, which are dominated by fractured-vuggy carbonate oil and gas reservoirs accounting for over two thirds of proved reserves. The fractured-vuggy carbonate condensate gas reservoir in the Tarim Basin is at a burial depth of 4500–7000 m with the characteristics of extremely strong reservoir heterogeneity, complicated and diverse reservoir seepage media, complex fluid properties and quite difficult static characterization, which brings many challenges to reserve evaluation, development plan design and performance analysis. In order to improve the recovery factor of this type of oil and gas reservoir, this paper takes the dynamic characterization to supplement the static characterization and combines each other to improve the accuracy. In addition, based on many years' of dynamic and static research and development practice, the key enhanced gas recovery (EGR) technologies for fractured-vuggy carbonate condensate gas reservoirs are innovatively developed, such as the high-accuracy dynamic characterization technology with dynamic and static iteration for fractured-vuggy body in the strongly attenuated area of desert by taking seismic inversion information as the basis and 3D numerical well test as the core, the multi-target 3D development technology in one well to improve reserve production of fractured-vuggy condensate gas reservoirs, and the gas-lift depressurization EGR technology for fractured-vuggy condensate gas reservoirs. In conclusion, this technological system better solves the key difficulties in the fine characterization of fractured-vuggy body, reserve production improvement and abandonment pressure reduction of well. What's more, it realizes the fine reservoir characterization of fractured zones and feather-shaped fractured zones and the accurate prediction of key development indexes, and increases the deployment success rate of effective wells and efficient wells by 26% compared with that in the initial stage of large-scale productivity construction. To sum up, these technologies provide powerful technical support and reference experience for the scientific and efficient development of fractured-vuggy carbonate condensate gas reservoirs.

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来源期刊
Natural Gas Industry B
Natural Gas Industry B Earth and Planetary Sciences-Geology
CiteScore
5.80
自引率
6.10%
发文量
46
审稿时长
79 days
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