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首页> 外文期刊>Marine and Petroleum Geology >Niger Delta gravity-driven deformation above the relict Chain and Charcot oceanic fracture zones, Gulf of Guinea: Insights from analogue models
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Niger Delta gravity-driven deformation above the relict Chain and Charcot oceanic fracture zones, Gulf of Guinea: Insights from analogue models

机译:几内亚湾遗物链和夏科特海洋断裂带上方的尼日尔三角洲重力驱动变形:来自模拟模型的见解

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摘要

The Niger Delta is a classic example of a passive margin delta that has gravitationally deformed above an overpressured shale decollement. The outboard Niger Delta clastic wedge, including the Akata Formation overpressured shale decollement, is differentially thickened across relict oceanic basement steps formed at the Chain and Charcot fracture zones. In this study, five analogue models were applied to investigate the effects of a differentially thickened overpressured shale decoilement across relict stepped basement on Niger Delta gravity-driven deformation. Gravity-driven delta deformation was simulated by allowing a lobate, layered sandpack to deform by gravity above a ductile polymer. A first series of experiments had a featureless, horizontal basement whereas a second series had differentially thickened polymer above Niger Delta-like basement steps. Two syn-kinematic sedimentation patterns were also tested. Surface strains were analysed using digital image correlation and key models were reconstructed in 3D. All five model deltas spread radially outward and formed plan view arcuate delta top grabens and arcuate delta toe folds. The arcuate structures were segmented by dip-oriented radial grabens and delta toe oblique extensional tear faults, which were formed by along-strike extensional strains during spreading. Basement steps partitioned delta toe gravity spreading into dual, divergent directions. Similarities between the analogue model structures and the Niger Delta strongly suggest a history of outward radial gravity spreading at the Niger Delta. The Niger Delta western lobe has potentially spread downdip more rapidly due to a thicker or more highly overpressured underlying Akata Fm. shale detachment. Faster western lobe spreading may have produced the Niger Delta toe 'dual lobe' geometry, perturbed up dip Niger Delta top growth fault patterns, and implies that western lobe toe thrusts have been very active. (C) 2015 Elsevier Ltd. All rights reserved.
机译:尼日尔三角洲是被动边界三角洲的经典示例,该边界在重力作用下在页岩脱压作用上方变形。尼日尔河三角洲外侧碎屑楔,包括Akata组超压页岩脱层,在Chain和Charcot断裂带形成的遗迹海洋基底台阶上,差异增厚。在这项研究中,应用了五个模拟模型来研究在尼日尔河三角洲重力驱动的变形过程中,跨过遗留阶梯状地下室的差异增厚的超压页岩解理作用。重力驱动的三角洲变形是通过使叶片状分层沙堆因重力作用在韧性聚合物上方变形而模拟的。第一组实验具有水平的无特征的地下室,而第二组实验在类似Niger Delta的地下室台阶上方具有差异增稠的聚合物。还测试了两种同运动学沉积模式。使用数字图像相关性分析表面应变,并以3D重建关键模型。所有五个模型三角洲均沿径向向外分布,并形成了平面视图,呈弧形的三角洲顶部ens片和弧形的三角洲脚趾褶皱。弧形结构被倾角定向的径向grab陷和三角趾斜向伸展断裂断裂所分割,这些断裂断裂是由伸展过程中沿走向的伸展应变形成的。地下室台阶将三角洲脚趾的重力划分为两个发散的方向。模拟模型结构与尼日尔三角洲之间的相似性强烈暗示了向外径向重力在尼日尔三角洲传播的历史。尼日尔三角洲西部裂片由于下伏的Akata Fm较厚或压力过大而潜在地较快地向下扩散。页岩脱离。较快的西瓣扩散可能产生了尼日尔三角洲趾的“双叶”几何形状,扰动了尼日尔三角洲的俯冲顶生断层形态,并暗示了西部叶趾的反冲作用非常活跃。 (C)2015 Elsevier Ltd.保留所有权利。

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