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Complex geometry and kinematics of subsidiary faults within a carbonate-hosted relay ramp

机译:碳酸盐岩层斜坡中次生断层的复杂几何学和运动学

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t Minor fault geometry and kinematics within relay ramps is strongly related to the stress field perturbations that can be produced when two major fault segments overlap and interact. Here we integrate classical fieldwork and interpretation of a virtual outcrop to investigate the geometry and kinematics of subsidiary faults within a relay ramp along the Tre Monti normal fault in the Central Apennines. Although the Tre Monti fault strikes parallel to the regional extension (NE-SW) it shows predominant dip-slip kinematics, suggesting a NW-SE oriented extension acting at sub-regional scale (1-10 km). Conversely, the slickenlines collected on the front segment of the relay ramp highlight right-lateral kinematics. The subsidiary faults in the relay ramp show a complex geometry (variable attitudes) and slickenlines describe multiple kinematics (left-lateral, dip-slip, right-lateral), independently of their orientation. Our fault slip analysis indicates that a local stress field retrieved from the kinematic inversion of the slickenlines collected on the front segment, and likely promoted by the interaction between the overlapping fault segments that bound the relay zone, can explain most of the geometry and kinematics of the subsidiary faults. Further complexity is added by the temporal interaction with both the regional and sub-regional stress fields.
机译:t继电器斜坡内的次要断层几何和运动学与两个主要断层段重叠并相互作用时可能产生的应力场扰动密切相关。在这里,我们将经典的野外工作和虚拟露头的解释相结合,以研究亚平宁山脉中部Tre Monti正断层的中继坡道内次生断层的几何学和运动学。尽管Tre Monti断层走向与区域扩展(NE-SW)平行,但显示出主要的倾滑运动学特征,表明NW-SE导向的扩展作用在次区域范围(1-10 km)。相反,在中继坡道前段收集的滑线突出显示了右侧运动学。继电器坡道中的辅助断层显示出复杂的几何形状(可变的姿态),并且滑动线描述了多种运动学(左旋,倾滑,右旋),而与它们的方向无关。我们的断层滑动分析表明,从收集在前段上的滑动线的运动学反演中获得的局部应力场,很可能是由界定中继区的重叠断层段之间的相互作用所促进的,可以解释该构造的大部分几何学和运动学。附属故障。与区域和次区域应力场的时间相互作用进一步增加了复杂性。

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