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Tectonics Inversions, Fault Segmentation, and Triggering Mechanisms in the Central Apennines Normal Fault System: Insights From High-Resolution Velocity Models

机译:中央亚平宁正常断层系统的构造反转,断层分割和触发机制:高分辨率速度模型的启示

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The potential role of subsequent tectonic phases in reworking inherited geological structures is a key issue to unravel the seismotectonics of an area. This has a direct connection with fault segmentation, earthquakes maximum magnitude, and strong implications for seismic hazard assessment. The central Apennines (Italy) represent an exemplary case, since it developed because of the overprint of different deformational phases, producing potential conditions for episodic tectonic inversions and a very complex structural architecture. In this paper, we show how inherited compressional structures, still dominating the Apennines belt architecture, interfere with the active extension, having a direct connection with active seismotectonics. We present seismicity and new velocity tomograms of an 80-km-long section of the normal fault system activated during the 2009 and 2016-2018 seismic sequences. The joint interpretation highlights how the extensional seismic sequences partially reactivated inherited compressive structures, which have not an undisputable relationship with the surficial geological setting. Complexity deriving from the irregular geometry of normal faults and inverted thrust ramps is responsible for the observed intense fragmentation of the extensional system. Fluid overpressure seems to be a viable mechanism behind the partial remobilization of unbroken segments of the fault system.
机译:后续构造阶段在改造继承的地质构造中的潜在作用是揭示一个地区地震构造的关键问题。这与断层的分割,地震的最大震级以及对地震危险性评估的强烈影响直接相关。中央亚平宁山脉(意大利)代表了一个典型案例,因为它是由于不同形变相位的叠印而发展起来的,因此为偶发性构造反转和非常复杂的结构构造提供了潜在条件。在本文中,我们展示了仍然主导着亚平宁山脉构造的继承压缩构造如何干扰主动伸展,并与主动构造构造直接相连。我们介绍了在2009年和2016-2018年地震序列中激活的正常断层系统的80公里长部分的地震活动性和新的速度X线断层图。共同的解释突出显示了伸展地震序列如何部分地重新激活了继承的压缩结构,而这些压缩结构与表层地质环境没有不容置疑的关系。由正常断层的不规则几何形状和逆推力斜坡引起的复杂性是造成伸展系统强烈破碎的原因。流体超压似乎是部分修复断裂系统未破坏部分的可行机制。

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