尼日利亚尼日尔三角洲Gabo油田层序地层学与构造格架

T.C. Iheaturu, R. Ideozu, S. Abrakasa, A. Jones
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摘要

本研究考察了尼日利亚尼日尔三角洲Gabo油田的层序地层和构造格架。本研究使用的材料包括segg - y的三维地震体、岩屑和测井资料。除了使用Frazier和Galloway方法进行基因序列外,所应用的方法是标准方法。从变形构造、沉积构造和沉积后构造三个方面对构造格架进行了解释。变形构造为断层F1和断层F2 -,它们是紧密间隔的正断层,而断层F3是同沉积生长断层。沉积构造为针状和层间砂/页岩层序,而沉积后构造为页岩压实、涂抹或弯曲构造。井对比表明,层序为旋回,T4 ~ T9砂相分析为极细至中粒,浅至深褐色,结构成熟,分选适中。相组合为河流分流河道、潮汐控制河道、废弃河道或转换河道和洪泛平原沉积。沉积环境为上三角洲平原、下三角洲平原和三角洲前缘。层序地层学分析解释了中间剖面页岩厚度的增加,表明沉积发生在低水位体系域(LST)、海侵体系域(TST)和高水位体系域(HST) 3个体系域。沉积学模型表明,沉积环境受潮汐影响,从河流到河口不等。研究结果可为世界上类似三角洲盆地的油田开发规划提供参考。此外,它还可以对比旋回序列和预测相似沉积模式的相分布。
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Sequence stratigraphy and tectonic framework of the Gabo Field, Niger Delta, Nigeria
This research examines the sequence stratigraphic and structural framework of the Gabo Field Niger Delta, Nigeria. Materials used in this research include 3D seismic volume in Seg-Y, ditch cuttings and wells logs. The methods applied are standard methods in addition to using the Frazier and Galloway approach for genetic sequences. The tectonic framework was interpreted in terms of deformational, depositional and post-depositional structures. The deformational structures are faults F1 and F2 – which are closely spaced normal faults and F3 is a syn-depositional growth fault. The depositional structures are pinchouts and interbedded sand/shale sequences whereas the postdepositional structures are compaction and smearing or flexure of the shales. The well correlation shows the sequences are cyclic and the facies analysis of T4 – T9 sands are very fine to medium grained, light to dark brown, texturally mature and moderate to well sorted. The facies associations are fluvial distributary channel, tide dominated fluvial channels, abandoned channel or switching and flood plain deposits. While the depositional environments are upper delta plain, lower delta plain and delta front. Sequence stratigraphic analysis explained the observed increase in shale thickness in the intermediate sections and showed sediment deposition occurred in three (3) systems tracts- Lowstand Systems Tract (LST), the Transgressive Systems Tract (TST) and Highstand Systems Tract (HST). The sedimentological model showed the environments of deposition had a tidal influence and ranged from fluvial to estuarine. The findings of this research may be applied to similar deltaic basins around the world in planning of oilfield development. In addition it may correlate cyclic successions and predict facies distributions of similar depositional patterns. 
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