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From Submarine to Subaerial Out-of-Sequence Thrusting and Gravity-Driven Extensional Faulting: Gran Sasso Massif, Central Apennines, Italy

机译:从潜水艇到序列外的序列推动和重力驱动的延伸故障:兰萨斯大块泥,意大利中央亚平线

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摘要

Thrust wedge evolution is typically characterized by out-of-sequence thrusting, which can occur in both submarine and subaerial conditions to maintain the balance between gravitational and tectonic forces. The Gran Sasso Massif, in Central Italy, is a high topography region where the kinematics and environmental conditions of deformation of some fault zones are still controversial, and this bears important implications for the Central Apennines orogenic wedge evolution. To obtain further constraints on fault activity in the Gran Sasso Massif, we studied the Monte Camicia and Vado di Ferruccio thrusts using structural, petrographical, and geochemical analyses. Such dataset allowed us to constrain the structural-diagenetic evolution of the studied faults, which has first-order implications in the characterization of their paleo-hydraulic properties. Our results indicate that in the Vado di Ferruccio out-of-sequence thrust, pressure solution-mediated mass transfer promoted low-permeability conditions in the fault core that led to a semiclosed fluid circulation, pore fluid overpressuring, and dolomite crystallization in submarine conditions. In contrast, the Monte Camicia out-of-sequence thrust was characterized by dominant cataclasis in subaerial conditions, which facilitated meteoric fluid infiltration. By considering both fault zones as belonging to the same thrust system at crustal scale, we interpret these differences as indicating the occurrence of multiple pulses of thrusting during the exhumation of this sector of the Central Apennines, up to Quaternary times, when extensional faulting eventually dissected the thrust stack. This caused extensional reactivation of the Monte Camicia Thrust and related alteration in vadose zone conditions, leading to porosity enhancement, dolomite dissolution, and calcitization.
机译:推力楔形演化通常是通过序列超出序列的特征,这可能发生在潜艇和子系统条件下,以保持引力和构造力之间的平衡。意大利中部的Gran Sasso Massif是一个高地形区域,其中一些断层区域的动力学和环境条件的变形仍然是争议的,这对中央亚平尼山脉楔形演进具有重要意义。为了在Gran Sasso Massif中获得对故障活动的进一步限制,我们研究了使用结构,岩化和地球化学分析的蒙特卡里卡和Vado di铁芯片。这样的数据集允许我们限制所研究的故障的结构 - 成岩演进,这在古液压特性的表征中具有一流的影响。我们的结果表明,在Vado Di Ferruccio超出序列推力下,压力溶液介导的传质在故障核心中促进了低渗透条件,导致了潜艇循环条件下的孔隙流体过压和白云石结晶。相比之下,蒙特卡西娅超出序列推力的特征在于促进血液条件中的显性催化剂,这促进了迁移流体渗透。通过考虑在地壳规模处于属于同一推力系统的故障区,我们将这些差异解释为表明在中央亚平宁管道挖掘期间发生多次推动脉冲的差异,当最终解剖的扩展断层时,达第四季时代推力堆栈。这引起了蒙特卡西州的延伸再重新激活蒙特区条件下的蒙特和相关的改变,导致孔隙率增强,白云石溶解和钙化。

著录项

  • 来源
    《Tectonics》 |2019年第12期|4155-4184|共30页
  • 作者单位

    Univ Parma Dept Chem Life Sci & Environm Sustainabil NEXT Nat & Expt Tecton Res Grp Parma Italy;

    Univ Parma Dept Chem Life Sci & Environm Sustainabil NEXT Nat & Expt Tecton Res Grp Parma Italy;

    Univ Parma Dept Chem Life Sci & Environm Sustainabil NEXT Nat & Expt Tecton Res Grp Parma Italy;

    Univ Parma Dept Chem Life Sci & Environm Sustainabil NEXT Nat & Expt Tecton Res Grp Parma Italy|ENI SpA Upstream Serv San Donato Milanese Italy|ENI SpA Tech Serv San Donato Milanese Italy;

    Univ Manchester Sch Earth & Environm Sci Manchester Lancs England;

    Univ Manchester Sch Earth & Environm Sci Manchester Lancs England;

    Univ Padua Dipartimento Geosci Padua Italy|Ist Nazl Geofis & Vulcanol Rome Italy;

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

    out-of-sequence thrusting; Central Apennines; structural diagenesis; stable isotopes; noble gas isotopes; orogenic wedge;

    机译:序列外旋转;中央亚平宁植物;结构成岩作用;稳定同位素;惰性气体同位素;orenologic楔形;

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