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Preorogenic exhumation of the North Pyrenean Agly massif (Eastern Pyrenees-France)

机译:北比利牛斯山Agly断层块的造山前发掘(法国东比利牛斯山脉)

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摘要

The Pyrenees, north of the North Pyrenean fault, display a complex structure involving a succession of peridotite massifs, basement massifs, and mid-Cretaceous to Late Cretaceous basins located in a narrow domain, which was affected by a mid-Cretaceous, preorogenic, high-temperature, low-pressure metamorphism. The Late Cretaceous basins were interpreted either as pull-apart basins formed during transcurrent motion of Iberia relative to Eurasia or as remnants of a larger extensional basin. Recent models support that peridotite massifs result from the exhumation of the mantle during this preorogenic event. The northern boundary of the Agly basement massif shows evidence of ductile deformation of the basal formations of the Agly sedimentary cover. Macroscopic and microscopic kinematics indicators consistent with asymmetry of crystallographic fabrics suggest normal sense of shear and thus suggest detachment, at least partial, of the Mesozoic cover from its basement. Triassic to Early Cretaceous limestones are mylonitic and consistently shows a foliation, a NS- to NE-trending lineation, shear criteria suggesting top-to-the-north shearing and locally boudinage. At the microscopic scale, mylonites are characterized by a very fine grain size, frequently <10 μm. They contain larger, partially recrystallized calcite parent grains and undeformed quartz grains with calcite fringes crystallized in pressure shadows. In these mylonites, calcite systematically shows a weak but well-defined crystallographic-preferred orientations, suggesting HT dislocation creep combined to diffusion creep and possibly grain boundary sliding in the finest fraction of the mylonites. Paleotemperatures determined using Raman spectrometry suggest synkinematic temperature conditions in the range 340-390℃, in good agreement with observed microstructures and calcite CPO. The mylonitic fabric in Mesozoic limestones is folded by EW-trending Pyrenean folds north of the Agly basement massif, attesting that this fabric formed before the Pyrenean orogeny. These data consistently support preorogenic extension under medium-temperature conditions of the northern Agly massif and likely of the massif itself. Since simultaneously (~100 Ma) a mid-Cretaceous basin opened south of the basement massif, we suggest a model of preorogenic exhumation of the Agly massif in response to the regional extension associated to the rotation of Iberia. This model may explain the exhumation of the North Pyrenean massifs during a single preorogenic event that allowed the opening of extensional basins and the exhumation of the lithospheric mantle. All these structures being subsequently reworked during the Pyrenean orogeny.
机译:北比利牛斯断层以北的比利牛斯山脉显示出复杂的结构,包括一系列的橄榄岩地层,基底地层以及位于狭窄区域的白垩纪至晚白垩纪盆地,受到白垩纪中期,造山前,高位的影响。低温低压变质作用。晚白垩纪盆地被解释为伊比利亚相对于欧亚大陆的横流运动过程中形成的拉脱盆地,或者被解释为较大的伸展盆地的残余。最近的模型支持在这个造山前事件期间,由于地幔的发掘而导致了橄榄岩地块。 Agly基底地块的北边界显示了Agly沉积盖层的基础构造的韧性变形的证据。与晶体学织物的不对称性一致的宏观和微观运动学指示符表明正常的剪切感,因此表明中生代盖层从其基底上脱落,至少部分脱落。从三叠纪到早白垩世的石灰岩是my质的,并且始终显示出叶状,从NS到NE的趋向线,剪切准则表明从上到北的剪切和局部地脉。在微观尺度上,my石的特征在于非常细的晶粒尺寸,经常<10μm。它们包含较大的,部分重结晶的方解石母粒和未变形的石英晶粒,以及在压力阴影中结晶的方解石条纹。在这些镍铁矿中,方解石系统地显示出较弱但定义明确的晶体学首选取向,表明HT位错蠕变与扩散蠕变相结合,并可能在镍铁矿的最细部分中发生晶界滑动。用拉曼光谱法测定的古温度表明,动力学温度范围为340-390℃,与观察到的微观结构和方解石CPO吻合良好。中生代石灰岩中的棉质纤维被EW趋势的比利牛斯山脉褶皱折叠到Agly基底地块以北,证明了这种织物是在比利牛斯造山运动之前形成的。这些数据一贯支持北部Agly地块以及可能是地块本身在中等温度条件下的造山前扩张。由于同时(〜100 Ma)一个白垩纪中层盆地在基底地块的南侧打开,因此我们提出了一种模型,以响应伊比利亚旋转所引起的区域扩展而对Agly地块进行造山前发掘。该模型可以解释在一次单个造山事件中北比利牛斯山群的掘出,该事件允许伸展盆地的打开和岩石圈地幔的掘出。随后在比利牛斯山造山运动中对所有这些结构进行了改造。

著录项

  • 来源
    《Tectonics》 |2013年第2期|95-106|共12页
  • 作者单位

    Geosciences Montpellier, CNRS UMR-5243, Universite de Montpellier Ⅱ, Place E. Bataillon, 34095 Montpellier, France;

    Geosciences Montpellier, CNRS UMR-5243, Universite de Montpellier Ⅱ, Montpellier, France,Laboratoire de Geologie, CNRS UMR-8538, Ecole Normale Superieure, Paris Cedex 5, France;

    Geosciences Montpellier, CNRS UMR-5243, Universite de Montpellier Ⅱ, Montpellier, France,CEREGE, Technopole de l'Arbois-Mediterranee, Aix en Provence cedex 4, France;

    Geosciences Montpellier, CNRS UMR-5243, Universite de Montpellier Ⅱ, Montpellier, France;

    Geosciences Montpellier, CNRS UMR-5243, Universite de Montpellier Ⅱ, Montpellier, France;

    BRGM/LMA /MIN, Orleans, France;

    Geosciences Montpellier, CNRS UMR-5243, Universite de Montpellier Ⅱ, Montpellier, France;

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