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用于尼日利亚尼日尔三角洲近海“斯特菲”油田储层预测的高分辨率三维地震和层序地层学

High resolution 3-D seismic and sequence stratigraphy for reservoir prediction in 'Stephi' field, offshore Niger Delta, Nigeria.

作者信息

Oluwadare Oluwatoyin Abosede, Folorunso Adetayo Femi, Ashiru Olusola Raheemat, Otoabasi-Akpan Stephanie Imabong

机构信息

Department of Applied Geophysics, The Federal University of Technology, Akure, Ondo State, Nigeria.

Department of Marine Science and Technology, The Federal University of Technology, Akure, Ondo State, Nigeria.

出版信息

Sci Rep. 2024 Sep 27;14(1):22390. doi: 10.1038/s41598-024-73285-z.

Abstract

The Offshore Niger Delta, Nigeria, stands as a dynamic geological marvel, known for its intricate processes and extensive hydrocarbon reservoirs. This study employed an integrated approach, utilizing 3D seismic data and well logs, to conduct a thorough analysis of sequence stratigraphy and reservoir characterization in the pursuit of optimizing hydrocarbon exploration in the region. The study focused on the NW-SE trending Miocene depocenters, which predominantly comprises alternating sandstone and thick shale layers within the Agbada Formation. These reservoir units showcased stacked shallow marine fluvial-deltaic sediments, separated by significant marine shale units. Within the study area, two hydrocarbon-bearing reservoirs were identified and named: R1 and R2. Petrophysical analysis identified R2 as the most promising reservoir, with a permeability of 1184 × 10 µm, 85% hydrocarbon saturation, porosity of 0.30, and effective porosity of 0.27. Fault structural analysis uncovered that hydrocarbons are trapped within a network of growth faults within the wave-dominated Niger Delta depositional system. From the sequence stratigraphic interpretation, four depositional sequences were delineated between the depths of 2030-3417 m, and are bounded by five sequence boundaries. Integrated seismic facies analysis revealed high-energy feeder systems likely supplying sediments from river sources to offshore locations. These integrated findings provide essential insights to inform resource management, exploration strategies, understanding of reservoir distribution, and structural intricacies within the complex offshore Niger Delta, Nigeria, providing valuable information. The depositional environment helped in the understanding of the stratigraphic traps which are prospects in the study area. This together with the associated reservoir quality allowed accurate prediction for potential reservoir facies and will further improve the field development plans.

摘要

尼日利亚近海尼日尔三角洲是一个充满活力的地质奇观,以其复杂的地质过程和丰富的油气藏而闻名。本研究采用综合方法,利用三维地震数据和测井资料,对层序地层学和储层特征进行了全面分析,以优化该地区的油气勘探。研究聚焦于西北-东南走向的中新世沉积中心,主要由阿格巴达组内交替出现的砂岩和厚页岩层组成。这些储层单元展示了叠置的浅海河流-三角洲沉积物,被重要的海相页岩单元分隔。在研究区域内,识别并命名了两个含油气储层:R1和R2。岩石物理分析确定R2是最具潜力的储层,渗透率为1184×10微米,含油饱和度为85%,孔隙度为0.30,有效孔隙度为0.27。断层结构分析发现,油气被困在波浪主导的尼日尔三角洲沉积系统内的生长断层网络中。从层序地层解释来看,在2030-3417米深度之间划分出四个沉积层序,并由五个层序边界界定。综合地震相分析揭示了高能供给系统,可能从河流源头向近海地区输送沉积物。这些综合研究结果为尼日利亚复杂的近海尼日尔三角洲的资源管理、勘探策略、储层分布理解和构造复杂性提供了重要见解,具有重要价值。沉积环境有助于理解地层圈闭,这些圈闭是研究区域内的勘探目标。这与相关的储层质量一起,能够准确预测潜在的储层相,进一步完善油田开发计划。

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