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Fault structure and slip localization in carbonate-bearing normal faults: An example from the Northern Apennines of Italy

机译:含碳酸盐岩正断层的断层结构和滑动定位:以意大利北部亚平宁山脉为例

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摘要

Carbonate-bearing normal faults are important structures for controlling fluid flow and seismogenesis within the brittle upper crust. Numerous studies have tried to characterize fault zone structure and earthquake slip processes along carbonate-bearing faults. However, due to the different scales of investigation, these studies are not often integrated to provide a comprehensive fault image. Here we present a multi-scale investigation of a normal fault exhumed from seismogenic depths. The fault extends for a length of 10 km with a maximum width of about 1.5 km and consists of 5 sub-parallel and interacting segments. The maximum displacement (370-650 m) of each fault segment is partitioned along sub-parallel slipping zones extending for a total width of about 50 m. Each slipping zone is characterized by slipping surfaces exhibiting different slip plane phenomena. Fault rock development is controlled by the protolith lithology. In massive limestone, moving away from the slip surface, we observe a thin layer (<2 cm) of ultracataclasite, cataclasite (2-10 cm) and fault breccia. In marly limestone, the fault rock consists of a cataclasite with hydrofractures and smectite-rich pressure solution seams. At the micro-nanoscale, the slip surface consists of a continuous and thin (<300 μm) layer composed of coarse calcite grains (~5-20 μm in size) associated with sub-micrometer grains showing fading grain boundaries, voids and/or vesicles, and suggesting thermal decomposition processes. Micrometer-sized calcite crystals show nanoscale polysynthetic twinning affected by the occurrence of subgrain boundaries and polygonalized nanostructures. Investigations at the kilometres-tens of meter scale provide fault images that can be directly compared with high-resolution seismological data and when combined can be used to develop a comprehensive characterization of seismically active fault structures in carbonate lithologies. Micro and nanoscale investigations along the principal slipping zone suggest that different deformation processes, including plastic deformation and thermal decomposition, were active during seismic slip.
机译:含碳酸盐的正常断裂是控制脆性上地壳内流体流动和地震发生的重要结构。大量研究试图表征含碳酸盐岩断层的断层带结构和地震滑动过程。然而,由于调查规模的不同,这些研究通常不被整合以提供全面的断层图像。在这里,我们提出了从地震发生深度发掘出的正常断层的多尺度研究。断层的长度为10 km,最大宽度为1.5 km,由5个平行且相互作用的部分组成。每个断层段的最大位移(370-650 m)沿着亚平行滑移带划分,滑移带的总宽度约为50 m。每个滑移区的特征在于呈现出不同滑移面现象的滑移表面。断层岩的发育受原岩岩性控制。在块状石灰岩中,从滑移表面移开,我们观察到了超薄层,薄层(2-10 cm)和断层角砾岩的薄层(<2 cm)。在马里的石灰岩中,断层岩由具有水力压裂和富含绿土的压力溶液接缝的凯莱石组成。在微纳米尺度上,滑移表面由连续而薄的(<300μm)层组成,该层由方解石粗晶粒(尺寸约为5-20μm)和亚微米级晶粒组成,表现出逐渐消失的晶界,空隙和/或囊泡,并建议热分解过程。微米级方解石晶体显示出受亚晶粒边界和多边形化纳米结构影响的纳米级多合成孪晶。在几十千米的规模上进行的研究提供了可以与高分辨率地震数据直接进行比较的断层图像,并且可以结合使用这些断层图像来开发碳酸盐岩岩性中地震活动断层结构的综合特征。沿主要滑动带的微观和纳米尺度研究表明,在地震滑动过程中活跃着不同的变形过程,包括塑性变形和热分解。

著录项

  • 来源
    《Journal of structural geology》 |2014年第ptaa期|154-166|共13页
  • 作者单位

    Dipartimento di Scienze della Terra Universita La Sapienza di Roma, Piazzale Aldo Moro 5, 00185, Roma, Italy,Istituto Nazionale di Geofisica e Vulcanologia Roma, Italy;

    Istituto Nazionale di Geofisica e Vulcanologia Roma, Italy;

    Dipartimento di Scienze della Terra Universita degli Studi di Siena, Italy;

    Dipartimento di Fisica e Geologia, Universita degli Studi di Perugia, Italy;

    Istituto Nazionale di Geofisica e Vulcanologia Roma, Italy;

    Istituto Nazionale di Geofisica e Vulcanologia Roma, Italy,Dipartimento di Fisica e Geologia, Universita degli Studi di Perugia, Italy;

    Dipartimento di Scienze della, Terra Universita La Sapienza di Roma, Roma, Italy;

    Istituto Nazionale di Geofisica e Vulcanologia Roma, Italy;

    Istituto Nazionale di Geofisica e Vulcanologia Roma, Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Normal fault; Carbonates; Microstructures; Earthquakes;

    机译:正常故障;碳酸盐微观结构;大地震;
  • 入库时间 2022-08-18 03:37:16

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