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Geometrical analysis of the refraction and segmentation of normal faults in periodically layered sequences

机译:周期性分层序列中正常断层折射和分段的几何分析

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Normal faults contained in multilayers are often characterised by dip refraction, which is generally attributed to differences in the mechanical properties of the layers, sometimes leading to different modes of fracture. Because existing theoretical and numerical schemes are not yet capable of predicting the 3D geometries of normal faults through inclined multilayer sequences, a simple geometric model is developed, which predicts that such faults should show either strike refraction or fault segmentation, or both. From a purely geometrical point of view, a continuous refracting normal fault will exhibit strike (i.e. map view) refraction in different lithologies if the intersection lineation of fault and bedding is inclined. An alternative outcome of dip refraction in inclined multilayers is the formation of segmented faults exhibiting en echelon geometry. The degree of fault segmentation should increase with increasing dip of bedding, and a higher degree of segmentation is expected in less abundant lithologies. Strike changes and associated fault segmentation predicted by our geometrical model are tested using experimental analogue modelling. The modelling reveals that normal faults refracting from pure dip-slip predefined faults into an overlying (sand) cover will, as predicted, exhibit systematically stepping segments if the base of the cover is inclined.
机译:多层中包含的正常断层通常以倾角折射为特征,这通常归因于各层机械性能的差异,有时会导致不同的破裂模式。由于现有的理论和数值方案尚不能通过倾斜的多层序列来预测正常断层的3D几何形状,因此开发了一个简单的几何模型,该模型预测此类断层应该显示出走向折射或断层分割,或两者兼而有之。从纯粹的几何学角度来看,如果断层和地层的相交线倾斜,则连续折射的正常断层将在不同的岩性中表现出走向(即地图视图)折射。倾斜多层中倾角折射的另一种结果是形成展现梯形几何形状的分段断层。断层分割的程度应随着层理倾角的增加而增加,并且在不那么丰富的岩性中,预期的分割程度会更高。我们使用几何模拟模型测试了由我们的几何模型预测的罢工变化和相关的故障分段。该模型显示,如预测的那样,如果覆盖层的底部倾斜,则从纯浸入式预定义断层折射到上覆(砂质)覆盖层的正常断层将显示出系统性的阶梯段。

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