尼日尔三角洲浅海沉积环境的岩相控制:对储层质量的启示

O. Ndukwe, G. Udom, C. Ugwueze
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引用次数: 0

摘要

KEN油田位于北纬4⁰52′44′N至北纬4⁰53′04′N和东经6⁰22′50′E至东经6⁰22′26′E之间,地质和地球物理数据集用于描述储层沉积相及其沉积环境。详细、准确的沉积环境圈定是加强油气藏表征和提供改造措施的坚实基础。本研究旨在提出一种利用不同数据集准确定义沉积环境的有效方法。所使用的数据包括生物地层学、三口井的测井曲线和三维全角度叠置地震数据。生物地层资料有助于根据标志页岩圈定的中新世中期至中新世晚期地层。它还有助于选择地层表面。圈定了3个沉积层序,最大淹没面分别为15.0、12.6和11.5 Ma。测井层序分析揭示了映射层序的内部几何结构和叠加规律。伽马射线特征从锯齿状圆柱形、漏斗形到钟形原木图案不等。地震地层学涉及相分析和反射终止模式,有助于沉积层序的填图。内部几何结构由高水位、海侵和低水位体系域组成。堆积模式有递进型、递进型和倒退型。基于地震相分析,综合结果表明研究区属于浅海背景下的远洋和碎屑流成因,这与本研究的其他数据集一致。圈定的3个储层(A、B、C)的沉积环境不同于三角洲上、下滨面河道砂体。C储层横向连续分布在3口研究井中,表明C储层的连通性是松散混合的。综合资料表明,沉积环境由内浅海环境向外浅海环境变化。研究结果对储层质量、勘探、评价和开发阶段具有重要意义。
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Lithofacies control on depositional environments in shallow offshore Niger Delta: implication on reservoir quality
The KEN field lies within latitude 4⁰52ꞌ44ꞌꞌ N to 4⁰53'04'' N and 6⁰22'50'' E to 6⁰22'26'' E. The geological and geophysical data sets were used to describe reservoir depositional facies and their environment of deposition. A detailed and accurate environment of sediment delineation is a solid basis to enhance characterization and providing measures for improving hydrocarbon reservoirs. This study aims to presents an effective method for accurately defining depositional environment with different data sets. The data used comprises of biostratigraphy, well logs from three wells and 3D full angle stack seismic data. The biostratigraphic data help to ascertain the age of the formation delineated to be middle Miocene to late Miocene based on the marker shale. It also helps in picking the stratigraphic surfaces. Three depositional sequences were delineated and dated with maximum flooding surfaces of 15.0, 12.6 and 11.5 Ma, respectively. Log sequence analysis reveals the internal geometry and stacking pattern of the mapped sequences. The gamma ray signature varies from serrated cylindrical, funnel to the bell-shaped log motif. The seismic stratigraphy involved facies analysis and reflection termination patterns, which aided the mapping of depositional sequence. The internal geometry is composed of Highstand, transgressive, and lowstand systems tracts. The stacking patterns vary from progradational, aggradational and retrogradational. Based on the seismic facies analysis, the integrated results show that the field of study is of pelagic and debris flow origin deposited in shallow marine settings, which also conform with the other data sets used for this study. The depositional environment of the three delineated reservoirs (Reservoir A, B and C) vary from deltaic upper to lower shoreface channels sand. Reservoir C, which is laterally continuous across the three studied wells shows that the connectivity of reservoir C is loosely amalgamated. The integrated data used for this study indicate that the environment of deposition varies from inner neritic to outer neritic environment. The results of this research are essential for reservoir quality, exploration, appraisal and development phases.
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