From Completion Design to Efficiency Analysis of Inflow Control Device: Comprehensive Approach for AICD Implementation for Thin Oil Rim Field Development Efficiency Improvement

T. Solovyev, N. Mikhaylov
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Abstract

The complex interbedded heterogeneous reservoirs of the Severo-Komsomolskoye field are developed by horizontal wells in which, as part of the pilot project's scope, autonomous inflow control devices (AICD) are installed to prevent early coning and gas breakthroughs in long horizontal sections and reduce sand production, which is a problem aggravated by an extremely low mechanical strength of the terrigenous deposits occurring in the Pokur formation of the Cenomanian stage in this area. The zones produced through AICDs are separated by swell packers. The issue of AICD effectiveness is discussed in the publications by Solovyev (2019), Shestov (2015), Byakov (2019) and some others. One of the methods used for monitoring horizontal sections with AICDs is production logging (PLT). However, due to the complexity of logging objectives, the use of conventional logging techniques makes the PLT unfeasible, considering the costs of preparing and carrying out the downhole operations. This paper provides some case studies of the Through-Barrier Diagnostics application, including passive spectral acoustics (spectral acoustic logging) and thermohydrodynamic modelling for the purpose of effective estimation of reservoir flows behind the liner with AICDs installed and well integrity diagnostics. As a result of the performed diagnostics, the well completion strategy was updated and optimised according to the log interpretation results, and one well intervention involving a cement squeeze with a straddle-packer assembly was carried out.
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从完井设计到流入控制装置效率分析:薄油环油田开发效率提高的AICD实施综合方法
Severo-Komsomolskoye油田的复杂互层非均质储层是通过水平井开发的,作为试点项目范围的一部分,在水平井中安装了自动流入控制装置(AICD),以防止长水平段的早期锥入和天然气突破,并减少出砂,这一问题由于该地区Cenomanian阶段Pokur地层的陆源矿床机械强度极低而加剧。通过aicd产生的储层由膨胀封隔器分隔。Solovyev(2019)、Shestov(2015)、Byakov(2019)等人的出版物讨论了AICD有效性问题。使用aicd监测水平段的方法之一是生产测井(PLT)。然而,由于测井目标的复杂性,考虑到准备和实施井下作业的成本,使用常规测井技术使得PLT不可行。本文提供了穿透屏障诊断应用的一些案例研究,包括被动频谱声学(频谱声波测井)和热流体动力学建模,目的是有效估计安装了aicd的尾管后的储层流动,并进行井完整性诊断。根据所执行的诊断结果,根据测井解释结果更新和优化完井策略,并进行了一次井干预,其中包括使用跨座封隔器组合进行水泥挤压。
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