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首页> 外文期刊>Journal of structural geology >How do lineations reflect the strain history of transpressive shear zones? The example of the active Alpine Fault zone, New Zealand
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How do lineations reflect the strain history of transpressive shear zones? The example of the active Alpine Fault zone, New Zealand

机译:线条如何反映超压剪切带的应变历史?新西兰活跃的阿尔卑斯断层带的例子

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Lineations within mylonites exhumed in the hanging wall of New Zealand's active Alpine Fault zone have a complicated relationship to contemporary plate kinematics. The shear zone is triclinic and macroscopic object lineations are not usually parallel to the simple shear direction, despite high total simple shear strains (7 > 150). This is mostly because the lineations are inherited from pre-mylonitic fabrics, and have not been rotated into parallelism with the mylonitic stretching direction (which pitches c. 44° in the fault plane). Furthermore, some lineations have been variably rotated depending on whether they are present in shear bands or microlithons, which accommodated bulk strains with different vorticities. Total strains required to obtain parallelism between the finite maximum principal stretching direction calculated from transpression models and these mylonitic lineations, are pure shear stretch, Si ~ 3.5; simple shear 11.7 < y < 150. The observations and numerical models also show that linear features are not rotated much during simple shear because they initially lie within the shear plane, and that inherited fabric components may not be destroyed until very high simple shear strains have been attained.
机译:在新西兰活跃的阿尔卑斯断层带的悬壁上挖掘出的my石内部的线条与现代板块运动学有着复杂的关系。尽管总的简单剪切应变很高(7> 150),但剪切带是斜边形的,宏观的物体轮廓通常不平行于简单剪切方向。这主要是因为线条是从前次腈纶织物继承而来的,并且尚未沿与绵纶伸展方向(在断层平面中倾斜约44°)平行旋转。此外,某些谱线根据它们是否存在于剪切带或微硅酮中而变化地旋转,它们适应了具有不同涡度的整体应变。为了获得由压迫模型计算得到的有限的最大主拉伸方向与这些典型的线型之间的平行度所需的总应变为纯剪切拉伸,Si〜3.5;简单剪力11.7

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