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首页> 外文期刊>New Zealand journal of geology & geophysics >Topographic control on shallow fault structure and strain partitioning near Whataroa, New Zealand demonstrates weak Alpine Fault
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Topographic control on shallow fault structure and strain partitioning near Whataroa, New Zealand demonstrates weak Alpine Fault

机译:新西兰Whataroa附近浅层断层构造和应变分区的地形控制显示出弱的高山断层

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摘要

It is notoriously difficult to characterise the strength and stress states of major plate boundaries. By taking advantage of the well-constrained stress contribution of topography adjacent to a segmented section of the Alpine Fault, New Zealand, we have identified a mechanical mix that produces the distinct fault segmentation pattern seen in field observations. Slope-generated shear and normal stresses rotate the principal stresses relative to the regional tectonically derived stress state and under certain strength states influence the displacement pattern. Three-dimensional models show that the scale and form of the near-surface partitioning depend on both topographic relief and local fault strength relative to the bedrock. The models suggest the Alpine Fault is weak to moderately weak relative to the bedrock and is a single structure to within c. 500m of the surface, above which segmentation occurs. Adjacent to the Alpine Fault, the stress state is highly variable. The intermediate principal stress, sigma(2), is rotated from tectonically dominated, near-vertical beneath ridges to near-horizontal beneath large valleys. Individual segments along the Alpine Fault dominated by strike-slip faulting, oblique thrusting or thrusting, can be identified by extracting the topographic contribution to the stress state from numerical models.
机译:众所周知,很难描述主要板块边界的强度和应力状态。通过利用新西兰阿尔卑斯山断层分段段附近地形受约束的应力贡献,我们确定了一种机械混合物,可以产生在野外观测中看到的独特断层分段模式。边坡产生的剪切力和正应力使主应力相对于区域构造学上的应力状态旋转,并且在一定强度状态下会影响位移模式。三维模型表明,近地表划分的规模和形式取决于地形起伏和相对于基岩的局部断层强度。这些模型表明,高山断裂相对于基岩是弱到中等弱的,并且是c内的单一结构。 500m的表面,在该表面上会发生分段。毗邻阿尔卑斯断层,应力状态变化很大。中间主应力sigma(2)从构造主导,近垂直的山脊旋转到大山谷下的近水平旋转。可以通过从数值模型中提取地形对应力状态的贡献来识别沿断裂带,斜冲断层或逆冲断层为主的阿尔卑斯断层的各个部分。

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