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The mechanics of fault-bend folding and tear-fault systems in the Niger Delta.

机译:尼日尔三角洲的断弯折弯和撕裂断层系统的力学原理。

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摘要

This dissertation investigates the mechanics of fault-bend folding using the discrete element method (DEM) and explores the nature of tear-fault systems in the deep-water Niger Delta fold-and-thrust belt. In Chapter 1, we employ the DEM to investigate the development of growth structures in anticlinal fault-bend folds. This work was inspired by observations that growth strata in active folds show a pronounced upward decrease in bed dip, in contrast to traditional kinematic fault-bend fold models. Our analysis shows that the modeled folds grow largely by parallel folding as specified by the kinematic theory; however, the process of folding over a broad axial surface zone yields a component of fold growth by limb rotation that is consistent with the patterns observed in natural folds. This result has important implications for how growth structures can he used to constrain slip and paleo-earthquake ages on active blind-thrust faults. In Chapter 2, we expand our DEM study to investigate the development of a wider range of fault-bend folds. We examine the influence of mechanical stratigraphy and quantitatively compare our models with the relationships between fold and fault shape prescribed by the kinematic theory. While the synclinal fault-bend models closely match the kinematic theory, the modeled anticlinal fault-bend folds show robust behavior that is distinct from the kinematic theory. Specifically, we observe that modeled structures maintain a linear relationship between fold shape (gamma) and fault-horizon cutoff angle (theta), rather than expressing the non-linear relationship with two distinct modes of anticlinal folding that is prescribed by the kinematic theory. These observations lead to a revised quantitative relationship for fault-bend folds that can serve as a useful interpretation tool. Finally, in Chapter 3, we examine the 3D relationships of tear- and thrust-fault systems in the western, deep-water Niger Delta. Using 3D seismic reflection data and new map-based structural restoration techniques, we find that the tear faults have distinct displacement patterns that distinguish them from conventional strike-slip faults and reflect their roles in accommodating displacement gradients within the fold-and-thrust belt.
机译:本文运用离散元方法研究了断层弯折的机理,探讨了深水尼日尔河三角洲褶皱冲断带撕裂断层的性质。在第一章中,我们使用DEM来研究背斜断层褶皱褶皱生长结构的发展。这项工作的灵感来自于观察结果,即与传统的运动学断层弯曲褶皱模型相比,活动褶皱中的生长地层显示出床倾角明显上升。我们的分析表明,建模的褶皱在很大程度上由运动学理论指定的平行褶皱增长;但是,在较宽的轴向表面区域上折叠的过程通过肢体旋转产生了折叠增长的一部分,这与自然折叠中观察到的模式一致。这一结果对他如何利用活动结构来限制活动盲冲断层上的滑动和古地震年龄具有重要意义。在第2章中,我们扩展了DEM研究,以研究更广泛范围的断层弯曲褶皱的发展。我们研究了机械地层学的影响,并通过运动学理论将模型与褶皱和断层形状之间的关系进行了定量比较。虽然后向断层弯曲模型与运动学理论非常吻合,但建模后的背斜断层弯曲表现出与运动学理论不同的鲁棒行为。具体而言,我们观察到建模的结构在折叠形状(γ)和断层-水平截止角(θ)之间保持线性关系,而不是用运动学理论规定的两种不同的背斜折叠模式来表达非线性关系。这些观察结果导致了修订的断层弯曲褶皱定量关系,可以用作有用的解释工具。最后,在第3章中,我们研究了西部深水尼日尔三角洲的撕裂和逆冲断层系统的3D关系。使用3D地震反射数据和新的基于地图的结构恢复技术,我们发现撕裂断层具有与常规走滑断层不同的位移模式,并反映了它们在褶皱-冲断带内适应位移梯度中的作用。

著录项

  • 作者

    Benesh, Nathan Philip.;

  • 作者单位

    Harvard University.;

  • 授予单位 Harvard University.;
  • 学科 Geology.;Geophysics.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 109 p.
  • 总页数 109
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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