海上砂岩候选油田提高采收率潜力评价与认识

Chuangchuang Qi, Aneesa Ijaz Rabbani, A. Suboyin, Jassim Abubacker Ponnambathayil, Md. Motiur Rahman, M. Haroun, Qisheng Ma, M. Gibrata, Lamia Rouis, Yanfidra Djanuar
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引用次数: 1

摘要

本研究的目的是全面了解非常规砂岩环境中提高采收率(EOR)的候选储层。独特的地质,由于它靠近内陆,内陆盆地,以及复杂的地层几何,包括广泛的褶皱和断裂,以及横向广泛的不整合。该研究在很大程度上依赖于储层表征的前沿。储层表征对于提供地下轮廓至关重要,有助于可视化现场的油气系统。我们的研究领域是更深的合并单元。对该剖面进行了详细分析,以了解岩石物理和流体性质。基于XRD分析和SEM分析,从矿物学含量中确定了感兴趣的岩层的性质,以建立结果之间的相互联系。结果汇编在确定储层质量和流体性质方面起着关键作用,这对孔隙度、渗透率、毛管压力、相对渗透率、润湿性、界面张力和流体成分等重要变量都有很大影响。粘土矿物学影响渗透速率,成岩叠印或增强或抑制流体流动。这项综合研究的新颖之处为全面定制筛选EOR研究奠定了基础,该研究目前正在针对海上候选油田进行开发。通过具有代表性的露头岩心注水进行了初步筛选。在确定候选储层的整体特征时,对各种储层和流体性质的综合了解是必不可少的。将这些复杂的储层纳入综合油藏表征研究中,是实现成功的EOR部署和优化石油产量的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation and Understanding the Potential of Enhanced Oil Recovery for a Candidate Offshore Sandstone Field
The aim of this investigation is to develop a comprehensive understanding of an enhanced oil recovery (EOR) candidate reservoir based in an unconventional sandstone dominated environment. The unique geology, owing to its proximity to an inland, endorheic basin, alongside its complex stratigraphic geometry incorporating extensive folding and faulting as well as a laterally extensive unconformity. The study leans heavily on the forefront of reservoir characterizations. Reservoir characterization is crucial in providing an outline of the sub-surface and helps visualize the hydrocarbon system in-place. Our study area is the deeper consolidated units. This section was analyzed in detail to understand the petrophysical and fluid properties. The properties of the rock formation(s) of interest were identified from mineralogical content based on XRD analysis and SEM analysis to develop an interlink between the results. A compilation of the results plays a key role in determining reservoir quality and fluid properties which heavily influences important variables such as porosity, permeability, capillary pressure, relative permeability, wettability, interfacial tension, and fluid compositions. The clay mineralogy affects the penetration rate and the diagenetic overprint either enhances or deliberates fluid flow. The novelty of this integrated study lays the foundation for a thorough and bespoke screening EOR study, which is currently under development for an offshore candidate field. Preliminary screenings were also conducted through core flooding with representative outcrops. An understanding of the integration of the various reservoirs and fluid properties is essential in determining the characteristics of the entirety of the candidate reservoir. Incorporating these complex zones in an integrated reservoir characterization study is fundamental in achieving successful EOR deployment and optimizes oil production.
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