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首页> 外文期刊>Journal of structural geology >Segmentation and growth of an obliquely reactivated normal fault
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Segmentation and growth of an obliquely reactivated normal fault

机译:斜再激活的正常断层的分割和生长

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Detailed kinematic analysis of a large (1800 m maximum displacement) reactivated normal fault in the Taranaki Basin, New Zealand, has been conducted using high quality 3D seismic data. The Parihaka Fault is approximately north-south striking in basement, where it accrued Late Cretaceous to Early Eocene displacements in response to east-west extension, and was obliquely reactivated by NW-SE extension in the Pliocene. Reactivation resulted in upward propagation, newly formed segmentation and up-dip clockwise rotation of the fault surface by up to ~20° from the strike of the basement fault. Fault segmentation, and map-view soft-linkage by relay zones in post Miocene strata, was synchronous with the formation of antithetic faults in Late Miocene strata at bends in the fault surface. Fault segment lengths, antithetic faults and relay zone dimensions were formed geologically instantaneously during initial reactivation of the main fault at 3.7-3.4 Ma (i.e. within the first ~ 10% of faulting). Rapid formation of Pliocene fault segments is followed by displacement accumulation without an increase in fault segment length until eventual relay breaching when continued ramp rotation is unsustainable. This evolutionary history is consistent with a model in which arrays of fault segments are, from inception, components of a single coherent structure.
机译:已经使用高质量的3D地震数据对新西兰塔拉纳基盆地的一个大型(最大位移为1800 m)重新激活的正断层进行了详细的运动学分析。 Parihaka断层大约在基底的南北走向,在白垩纪晚期至始新世早期位移,响应东西向的扩展,并由上新世的NW-SE扩展倾斜重新激活。重新激活导致地下断层的走向向上扩展,新形成的分段以及断层表面顺时针向上倾斜约20°。后中新世地层中的断层分割和中继区的地图视图软链接与中新世晚期地层在断层弯曲处的对生断层形成同步。在3.7-3.4 Ma的主断层初始复活过程中(即在断层的前10%内),地质断裂瞬间形成了断层段长度,对断层断层和中继带尺寸。在上新世断层的快速形成之后,在不增加断层段长度的情况下进行了位移累积,直到在连续坡道旋转不可持续时最终破坏继电器为止。这种演化历史与一个模型相一致,在该模型中,断层段的阵列从一开始就是单个相干结构的组成部分。

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