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The influence of normal fault geometry on igneous sill emplacement and morphology

机译:正断层几何形状对火成基岩位置和形态的影响

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摘要

Magma flow within the subsurface is heavily influenced by the pre-existing structure of the upper crust. During continental rifting, normal faults modify the geometry of igneous networks by providing preferential pathways for the intrusion of magma. However, the way in which magma intrudes into fault planes is poorly understood. Here, we quantitatively document the relationship between fault architecture and intrusion distribution and geometry using threedimensional seismic reflection data from the Exmouth Sub-basin, offshore northwest Australia. Inclined segments of saucer-shaped sills intrude several faults along convex-into-the-hangingwall fault-plane corrugations. We suggest that stress field perturbations associated with the fault-plane corrugations provide suitable conditions for fault reactivation as magma conduits. Pre-existing faults also modify sill geometries through the offset of stratigraphic horizons that may be preferentially intruded, potentially resulting in the formation of a new sill or the development of minor intrusive steps. This work emphasizes the importance of the pre-existing structural template in controlling the growth and final geometry of intrusive networks.
机译:地下内部的岩浆流动受到上地壳既有结构的严重影响。在大陆裂谷期间,正常断层通过提供岩浆侵入的优先通道来改变火成岩网络的几何形状。然而,人们对岩浆侵入断层平面的方式知之甚少。在这里,我们使用来自澳大利亚西北海岸埃克斯茅斯次盆地的三维地震反射数据定量记录了断层构造与侵入分布和几何之间的关系。碟形门槛的倾斜段沿凸入壁的断层平面波纹侵入多个断层。我们建议,与断层平面波纹相关的应力场扰动为岩浆导管提供了断层再激活的合适条件。预先存在的断层还会通过可能优先侵入的地层层位偏移来改变基岩的几何形状,从而可能导致形成新的基岩或形成较小的侵入性台阶。这项工作强调了预先存在的结构模板在控制入侵网络的增长和最终几何形状方面的重要性。

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