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Crustal structure of the deepwater west Niger Delta passive margin from the interpretation of seismic reflection data

机译:从地震反射数据解释看尼日尔河三角洲西缘深水区的地壳结构

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The interpretation of 2D and 3D seismic reflection data complemented with gravity data allows the crustal architecture of the deepwater west Niger Delta passive margin to be defined. The data show that the area is underlain by oceanic crust that is characterised by a thickness of 5-7 km and by internal reflectivity consisting of both dipping and sub-horizontal reflectors. Some of the dipping reflections can be traced up to the top of the basement where they offset it across a series of minor to major thrust faults. Other internal reflections are attributed to extensional shear zones and possibly due to intrusions in the lower crust. The Moho can be correlated as a discrete reflection over >70% of the study area. It is generally smooth, but localised relief of up to 1 km is observed. The southeastern part of the study area is dominated by a zone of SW-NE striking basement thrusts.The crustal thickness in the study area is below the global average for a typical oceanic crust. Generally the crust is thinnest around a major transform structure, the Chain Fracture Zone, possibly related to the local geometry of the spreading fabrics. There is no significant variation in the thickness of the crust across this ocean-ocean transform in the area. The recognition of oceanic crust has profound implications for heat flow and thermal maturation of hydrocarbons in the Niger Delta petroleum province.
机译:对2D和3D地震反射数据以及重力数据的解释,可以定义尼日尔河三角洲西部深水区被动边缘的地壳结构。数据显示,该区域位于洋壳的下面,洋壳的厚度为5-7 km,内部反射率包括浸入反射器和亚水平反射器。某些倾斜反射可以追溯到地下室的顶部,在这些区域中,它们会跨越一系列较小到较大的逆冲断层而偏移。其他内部反射归因于延伸剪切带,可能归因于下部地壳的侵入。 Moho可以关联为大于70%研究区域的离散反射。它通常是平滑的,但观察到的局部起伏可达1 km。研究区的东南部以西南向北撞击基底冲断带为主,研究区的地壳厚度低于典型洋壳的全球平均水平。通常,外壳在主要变形结构(链断裂带)周围最薄,可能与摊铺织物的局部几何形状有关。在该区域的这次海洋-海洋转换中,地壳厚度没有明显变化。尼日尔河三角洲石油省对洋壳的认识对碳氢化合物的热流和热成熟具有深远的影响。

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