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首页> 外文期刊>Journal of structural geology >Three-dimensional distinct element modelling of relay growth and breaching along normal faults
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Three-dimensional distinct element modelling of relay growth and breaching along normal faults

机译:沿正常故障的继电器成长和破坏的三维独特元素建模

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摘要

Three-dimensional numerical models of neutral (i.e. slip-parallel) relay zones on normal faults that cut massive sandstone host rocks have been constructed using the distinct element method code, Particle Flow Code in 3-D (PFC~(3D)). The models successfully reproduce the geometries, displacement profiles and strains observed in natural relay zones. In contrast to boundary element method simulations, the modelled relay ramps dip towards the hanging wall, consistent with observations of most natural relay zones. The modelling shows that relay zones are stable structures that 'grow' by progressive rotation of an approximately planar relay ramp without significant propagation of the relay-bounding faults prior to breaching. Stable growth is terminated when a breaching fault propagates across the top or bottom of the relay ramp. Breaching fault propagation is not instantaneous and the ramp continues to rotate, and therefore transfer displacement between the relay-bounding faults, until they become fully hard linked. Following hard linkage, displacement is accommodated by slip on the through-going fault surface. The modelling results confirm previous conceptual models of relay growth and breaching based on geometric and kinematic analysis of natural relay zones.
机译:使用独特的单元法代码3D粒子流代码(PFC〜(3D)),构建了切割块状砂岩基质岩石的正常断层上的中性(即滑动平行)中继带的三维数值模型。该模型成功地再现了自然中继带中观测到的几何形状,位移剖面和应变。与边界元方法仿真相反,建模的中继坡道向悬墙倾斜,这与大多数自然中继区的观察结果一致。该模型显示,继电器区域是稳定的结构,通过逐步旋转近似平面的继电器斜坡来“增长”,而不会在破坏之前明显扩展继电器边界故障。当突破性故障传播到继电器斜坡的顶部或底部时,稳定的增长终止。破坏故障的传播不是瞬时的,斜坡继续旋转,因此在继电器边界故障之间传递位移,直到它们变得完全硬连接为止。进行硬连接后,通过在贯穿的断层面上的滑移来适应位移。建模结果证实了基于自然接力区的几何和运动学分析的接力增长和破坏的先前概念模型。

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