在高气油比、流体接触不均匀的长水平裸眼采油系统中,通过自动流入装置AICD实现采收率最大化

Nik Fazril Ain Sapian, F. Tusimin, Stefanie Chuah Mei Mei, Arthur Goh Jin Wang, Nurul Athirah Wahid Ali, Nagarajan A/L Naupa, A. Madzidah, Elsayed Ouda Ghonim, Abdurrezagh Awid, N. Hasbullah, Nik Omar Md Nazim
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引用次数: 0

摘要

为了最大限度地提高马来西亚近海XXYY非均质砂岩油藏的采收率,1A、2A、3A和4A井被设计为四(4)个水平井。自1975年天然气注入(1994年)和注水(2019-2022年)之前,该油藏一直在自然枯竭状态下生产。XXYY储层渗透率范围较宽,低至1-mD至4-D,近期饱和度测井获取的油气界面不确定性高。再加上在30-50ft tvd之间观察到的大量气顶和油环变薄的复杂储层性质,XXYY储层以最佳GOR的历史产油量仍然是油田后期的主要挑战。在这种具有挑战性的条件下,通过油藏和井模型的集成,分析了在水平段使用多个自动流入控制装置(AICD)阀门放置方案的预先规划,以实现阀门优化过程,从而在PSC结束时实现油井的目标产量和储量。在实现生产目标的同时,为控制出砂和侵蚀风险,设定了特定的压降和生产目标作为关键的设计限制。最终,这些模型提供了AICD对油井性能影响的即时和长期预测,这是最终设计的关键因素。该项目提出的工作流程协同了地下、完井和钻井等多领域的工作范围。该案例研究展示了AICD在水平段放置的详细设计步骤的价值,以及基于实际裸眼测井解释的优化,主要是渗透率、饱和度和油气、油水界面的垂直隔离。水平井易受“鞋跟-脚趾”效应的影响,导致产油主要集中在鞋跟段,而鞋跟段贡献较小,随后导致气窜。XXYY储层也容易出砂,需要防砂。由于这些原因,所有4口井都设计为使用裸眼独立筛管(OHSAS)进行完井,并使用AICD来平衡水平段的产量,并提供GOR控制。这4口井钻进了30-60ft tvd的油柱,与油气接触面(GOC)的垂直距离为10-15ft tvd,以保持与油水接触面的柱比为2/3。考虑到这些对GOC的边际影响,集成AICD敏感性工作流程可以实时执行,以分析瞬时和时间步进的产油量和GOR速率,从而使团队获得所需的生产支撑。优化后的AICD安装成功将GOR控制在6 Mscf/stb以下,从而实现了高于4600桶/天的瞬时产量。AICD优化与OHSAS完井、储层测图和岩石物理评价相结合的成功,已被证明是棕地恢复项目中提高油井产量的最终解决方案。将钻前和钻后的结果与实际试井结果进行比较,进行进一步的灵敏度分析,用于不断改进现场的生产管理策略。
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Maximizing Production Recovery Through Autonomous Inflow Device AICD Configuration in Challenging Long Horizontal Open-Hole Oil Producer with High Gas-Oil-Ratio and Un-Even Fluid Contacts
Wells 1A, 2A, 3A & 4A are designed as four (4) horizontal oil producers to maximize the oil recovery from the XXYY heterogenous sandstone reservoir in Offshore Malaysia. The reservoir has been producing since 1975 on natural depletion before gas injection (1994) and water injection (2019-2022) were introduced. XXYY reservoir is expected to have wide permeabilities ranges from as low as 1-mD to 4-D and high uncertainty of gas-oil contacts from recent saturation logging acquisition. Coupled with the complex reservoir nature of massive gas cap and thinning oil rim observed between 30-50ft-TVD, historical production of oil with optimum GOR in XXYY reservoir remained the main challenge towards late field life. For such challenging condition, pre-planning with multiple Autonomous Inflow Control Device (AICD) valve placement scenarios across the horizontal sections were analyzed using integration of reservoir and well models for valves optimization process to achieve well's target production and reserves by the end of PSC. Specific drawdown and production targets were set as critical design limits in managing sanding and erosional risks while still achieving production target. Ultimately, these models provided both instantaneous and long-term forecasts of AICD impact on the wells’ performance – key factors in the final design. The workflow presented in this project synergized scope of multi-domain from subsurface, completion and drilling. This case study demonstrates the value of detailed design steps on AICD placement across horizontal segments and optimizations based on actual open-hole logging interpretation, mainly – permeability, saturation and vertical stand-offs from gas-oil and oil-water contacts. The horizontal wells drilled are susceptible to "heel-toe" effect, resulting in dominant production in the heel section while the toe section contributes less, subsequently inducing gas coning at the heel. XXYY reservoir is also sand prone and requires sand control. For these reasons, all 4 wells are designed to be completed with Open Hole Stand Alone Screen (OHSAS) with the use of AICD to balance production withdrawal across the horizontal segments and provide GOR control. The four (4) wells penetrated 30-60ft-TVD of oil column with 10-15ft-TVD vertical stand-offs from gas-oil contact (GOC) to maintain a 2/3 column ratio from oil-water contact. Given these marginal stand-offs to GOC, integration of AICD sensitivities workflow were performed on-the-fly to analyze instantaneous and time-stepped oil and GOR rates allowing the team to achieve required production sustenance. The installations of optimized AICD have resulted in successful GOR control below 6 Mscf/stb targeted, resulting in delivering higher instantaneous production rates against planned of 4,600bopd. The success of AICD optimizations integrated with OHSAS completion, reservoir mapping and petrophysical evaluation have been proven as ultimate solution to deliver the wells oil production for a brown field rejuvenation project. The pre-drill and post-drill results calibrated to actual well tests are compared for further sensitivity analysis, to be used in the continuous improvement of production management strategies in the field.
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