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首页> 外文期刊>Swiss journal of geosciences >Microtextural investigation (SEM and TEM study) of phyllosilicates in a major thrust fault zone (Monte Perdido, southern Pyrenees): impact on fault reactivation
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Microtextural investigation (SEM and TEM study) of phyllosilicates in a major thrust fault zone (Monte Perdido, southern Pyrenees): impact on fault reactivation

机译:主要逆冲断层带(比利牛斯山脉南部的蒙特佩尔迪多)的页硅酸盐的微观结构研究(SEM和TEM研究):对断层活化的影响

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摘要

Thrusting fault zone in foreland basins are characterized by highly foliated zones generally enriched in phyllosilicates which can play a major role on the mechanical behaviour of the fault. In this context, investigations of synkinematic clay minerals permit to determine the origin of the fluid from which they precipitated as well as the mechanisms of deformation. Our study is focused on clay mineral assemblages (illite and chlorite) in a major thrust fault located in the Monte Perdido massif (southern Pyrenees), a shallow thrust that affects upper cretaceous-paleocene platform carbonates and lower Eocene marls and turbidites. It implied 3 km of displacement of the Monte Perdido thrust unit with respect to the underlying Gavarnie unit. In this area the cleavage development by pressure-solution is linked to the Monte Perdido and Gavarnie thrust activity. The core zone of the fault, about 6 m thick, consists of an interval of intensely deformed clay-bearing rocks bounded by major shear surfaces. The deformed sediment is markedly darker than the protolith. Calcite-quartz shear veins along the shear planes are abundant. Detailed SEM and TEM observations of highly deformed fault zone samples indicate that clay mineral enrichment in the core zone of the fault is not only related to passive increase by pressure-solution mechanism but that dissolu-tion-recrystallization of phyllosilicates occurs during deformation. A mineral segregation is observed in the highly deformed zone. Newly formed 2M_1 muscovite is present along the cleavage whereas IIb chlorite crystals fill S_v2 shear veins suggesting syntectonic growth of phyllosilicates in the presence of fluids in low-grade metamorphic conditions. These mineralogical reactions act as weakening processes and would favour Monte Perdido fault creeping.
机译:前陆盆地的逆冲断层带的特征是高叶状带,通常富含页硅酸盐,这可能对断层的力学行为起主要作用。在这种情况下,对运动粘土矿物的研究可以确定它们从中沉淀出来的流体的起源以及变形的机理。我们的研究重点是位于蒙特佩尔迪多断层块(比利牛斯山脉南部)的主要逆冲断层中的粘土矿物组合(伊利石和绿泥石),这是一种浅冲断作用,影响了上白垩统-古新世平台碳酸盐岩和下始新统泥灰岩和浊质岩。它暗示了蒙特·佩迪多(Monte Perdido)冲断单元相对于下伏的加瓦涅单元(Gavarnie unit)的位移3 km。在该区域,通过压力作用的裂解作用与蒙特·佩迪多和加瓦涅的逆冲活动有关。断层的核心区域约6 m厚,由一定范围的强烈变形的含粘土岩石组成,这些岩石由主要的剪切面界定。变形的沉积物明显比原石深。沿剪切平面的方解石-石英剪切脉丰富。对高度变形的断层带样品的详细SEM和TEM观察表明,断层核心带中粘土矿物的富集不仅与通过压力溶解机制的被动增加有关,而且在变形过程中发生了层状硅酸盐的溶解-再结晶。在高度变形的区域中观察到矿物偏析。沿解理存在新形成的2M_1白云母,而IIb亚氯酸盐晶体充满S_v2剪切脉,表明在低品位变质条件下存在流体的情况下,层状硅酸盐的复合构造生长。这些矿物学反应起着弱化作用,并有利于蒙特·珀迪多断层蠕变。

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  • 来源
    《Swiss journal of geosciences》 |2012年第2期|313-324|共12页
  • 作者单位

    Laboratoire ChronoEnvironnement, Universite de Franche Comte, 16 route de Gray, 25030 Besancon, France;

    Institut de Mineralogie et Geochimie, Universite de Lausanne, 1015 Lausanne, Switzerland;

    Geosciences Montpellier, UMR 5243, Universite Montpellier 2, 34095 Montpellier, France;

    Lab. UTINAM, Universite de Franche Comte, 16 route de Gray, 25030 Besancon, France;

    Laboratoire ChronoEnvironnement, Universite de Franche Comte, 16 route de Gray, 25030 Besancon, France;

    Laboratoire ChronoEnvironnement, Universite de Franche Comte, 16 route de Gray, 25030 Besancon, France;

    Departament de Geoquimica, Petrologia i Prospeccio Geologica, Facultat de Geologia, Universitaet de Barcelona, 08028 Barcelona, Spain;

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

    thrust fault; clay minerals; TEM; slip weakening; deformation; sediments;

    机译:推力断层粘土矿物;TEM;滑移减弱形变;沉积物;

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