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Progressive development of block-in-matrix fabric in a shale-dominated shear zone: Insights from the Bobbio Tectonic Window (Northern Apennines, Italy)

机译:页岩为主的剪切带中的基质块状织物的逐步开发:来自Bobbio构造窗口(意大利亚平宁山脉北部)的见解

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摘要

Block-in-matrix is a common fabric characterizing highly deformed to apparently chaotic rocks originated by sedimentary, tectonic and mud-diapiric processes, in many exposed orogenic belts. A true melange originates when this fabric is associated with mixing of rocks of different ages and provenance, as that characterizing the main decollement shear zone developed between the highly allochthonous Ligurian nappe and its substratum of foredeep deposits at the margins of the Bobbio Tectonic Window (Trebbia Valley, Northern Apennines). Mixing of rocks by both mass transport processes and synsedimentary thrusting occurs at the front and tectonic erosion at the base of the nappe during its emplacement. Evidence of polyphased deformations, spanning from liquefaction-related and hydroplastic structures, to pseudo-hydrofracturing features and mineralized veining, have been recognized within the marginal portions and along the sheared contacts of blocks encased within a scaly matrix. Crosscutting relationships testify a progressive deformation involving a transition from mesoscopic ductile to brittle conditions with the significant contribution of fluid overpressure. A novel evolutionary scheme for block-in-matrix fabric development is here proposed, involving the progressive dismembering of already highly deformed units, originally developed in non- to poorly lithified conditions, through a generalized simple shearing achieved during the evolution of the shear zone, coupled with strain hardening due to tectonic compaction, synkinematic diagenesis and fluid expulsion.
机译:基体块是一种常见的织物,其特征是在许多裸露的造山带中高度变形为明显由沉积,构造和泥质成岩作用起源的混沌岩石。当这种织物与不同年龄和种源的岩石混合在一起时,就产生了真正的混杂物,因为它表征了高度异质的利古里亚推覆层及其在Bobbio构造窗(特雷比比亚)边缘的前深层沉积物基底之间形成的主要弯折剪切带。谷,北亚平宁山脉)。岩浆在运移过程中,通过传质过程和同冲作用混合岩石,发生在前部,构造侵蚀发生在推覆底部。已经认识到从液化相关的和水硬性结构到假水力压裂特征和矿化脉络的多相变形的证据,这些证据在边缘部分内以及沿着包裹在鳞片基质中的块的剪切接触处进行。横切关系证明了渐进形变,涉及从介观韧性到脆性条件的转变,其中流体超压的贡献很大。在此提出了一种用于在基体中进行块状织物开发的新的进化方案,该方案涉及通过在剪切区域的演化过程中实现的广义简单剪切,逐步分解原本是在非石化至不良石化条件下开发的已经高度变形的单元,加上由于构造压实,动能成岩作用和流体驱散而引起的应变硬化。

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  • 来源
    《Tectonics》 |2012年第1期|p.3.1-3.21|共21页
  • 作者单位

    Department of Arctic Geology, University Centre in Svalbard,Pb. 156, N-9171 Longyearbyen, Norway;

    Dipartimento di Scienze della Terra e Geologico-Ambientali, Universita di Bologna, Via Zamboni 67, 1-40127 Bologna, Italy;

    Exploration and Production Division, ENI S.p.A., Via Emilia 1,1-20097 San Donato Milanese, Italy;

    SJS Resource Management, Canning Bridge, Western Australia,Australia Copyright 2012 by the American Geophysical Union;

    Dipartimento di Scienze della Terra e Geologico-Ambientali, Universita di Bologna, Via Zamboni 67, 1-40127 Bologna, Italy;

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