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首页> 外文期刊>Journal of structural geology >Enabling 3D geomechanical restoration of strike- and oblique-slip faults using geological constraints, with applications to the deep-water Niger Delta
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Enabling 3D geomechanical restoration of strike- and oblique-slip faults using geological constraints, with applications to the deep-water Niger Delta

机译:利用地质约束条件实现走滑和斜滑断层的3D地质力学恢复,并应用于深水尼日尔三角洲

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We present a new approach of using local constraints on fault slip to perform three-dimensional geomechanical restorations. Geomechanical restoration has been performed previously on extensional and contractional systems, yet attempts to restore strike- and oblique-slip fault systems have generally failed to recover viable fault-slip patterns. The use of local measures of slip as constraints in the restoration overcomes this difficulty and enables restorations of complex strike- and oblique slip-systems. To explore this approach, we develop a synthetic restraining bend system to evaluate different ways that local slip constraints can be applied. Our restorations show that classical boundary conditions fail to reproduce the fault offset and strain pattern. In contrast, adding piercing points and/or properly constraining lateral walls enables restoration of the structure and resolves the correct pattern of slip along the faults. We then restore a complex system of tear-faults in the deepwater Niger Delta basin. We use channel offsets imaged by the seismic data to define local fault-slip constraints. Balancing these constraints equally on both sides of the major faults yields the most consistent restoration outcomes. This approach resolves reasonable slip styles on the complex set of thrust, normal, and strike-slip faults in the structure. This suggests that limited geologic fault slip constraints can be effectively incorporated in geomechanical restorations, yielding accurate restoration kinematics and thereby forecasting faults slip patterns within the structures.
机译:我们提出了一种使用局部断层滑动约束进行三维地质力学恢复的新方法。先前已经在伸展和收缩系统上进行了地质力学恢复,但是恢复走滑和斜滑断层系统的尝试通常未能恢复可行的断滑模式。使用局部滑移量度作为修复中的约束条件克服了这一困难,并使复杂的走滑和倾斜滑移系统得以恢复。为了探索这种方法,我们开发了一种综合约束弯曲系统,以评估可以应用局部滑动约束的不同方式。我们的恢复结果表明,经典边界条件无法再现断层偏移和应变模式。相反,增加刺穿点和/或适当限制侧壁可恢复结构并解决沿断层滑动的正确模式。然后,我们在尼日尔三角洲深水盆地恢复了一套复杂的撕裂断层系统。我们使用地震数据成像的通道偏移量来定义局部断层滑移约束。在主要断层的两侧均等地平衡这些约束条件,可获得最一致的恢复结果。这种方法解决了结构中复杂的推力,法向和走滑断层的复杂滑移样式。这表明有限的地质断层滑动约束可以有效地纳入地质力学修复中,从而产生准确的修复运动学,从而预测结构内的断层滑动模式。

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