首页> 外文期刊>Tectonics >Mantle exhumation, crustal denudation, and gravity tectonics during Cretaceous rifting in the Pyrenean realm (SW Europe): Insights from the geological setting of the lherzolite bodies
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Mantle exhumation, crustal denudation, and gravity tectonics during Cretaceous rifting in the Pyrenean realm (SW Europe): Insights from the geological setting of the lherzolite bodies

机译:比利牛斯山脉白垩纪裂谷期间的地幔掘出,地壳剥蚀和重力构造(西南欧洲):锂铁矿体的地质背景

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摘要

The Pyrenean peridotites (lherzolites) form numerous small bodies of subcontinental mantle, a few meters to 3 km across, exposed within the narrow north Pyrenean zone (NPZ) of Mesozoic sediments paralleling the north Pyrenean Fault. Recent studies have shown that mantle exhumation occurred along the future NPZ during the formation of the Albian-Cenomanian Pyrenean basins in relation with detachment tectonics. This paper reviews the geological setting of the Pyrenean lherzolite bodies and reports new detailed field data from key outcrops in the Beam region. Only two types of geological settings have to be distinguished among the Pyrenean ultramafic bodies. In the first type (sedimented type or S type), the lherzolites occur as clasts of various sizes, ranging from millimetric grains to hectometric olistoliths, within monogenic or polymictic debris flow deposits of Cretaceous age, reworking Mesozoic sediments in dominant proportions as observed around the Lherz body. In the second type (tectonic type or T type), the mantle rocks form hectometric to kilometric slices associated with crustal tectonic lenses. Both crustal and mantle tectonic lenses are in turn systematically associated with large volumes of strongly deformed Triassic rocks and have fault contacts with units of deformed Jurassic and Lower Cretaceous sediments belonging to the cover of the NPZ. These deformed Mesozoic formations are not older that the Aptian-early Albian. They are unconformably overlain by the Albian-Cenomanian flysch formations and have experienced high temperature-low pressure mid-Cretaceous metamorphism at variable grades. Such a tectonic setting characterizes most of the lherzolite bodies exposed in the western Pyrenees. These geological data first provide evidence of detachment tectonics leading to manle exhumation and second emphasize the role of gravity sliding of the Mesozoic cover in the preorogenic evolution of the Pyrenean realm. In the light of such evidence, a simple model of basinrndevelopment can be inferred, involving extreme thinning of the crust, and mantle uprising along a major detachment fault. We demonstrate coeval development of a crust-mantle detachment fault and generalized gravitational sliding of the Mesozoic cover along low-angle faults involving Triassic salt deposits as a tectonic sole. This model accounts for the basic characteristics of the precollisional rift evolution in the Pyrenean realm.
机译:比利牛斯橄榄岩(锂铁矿)形成许多次大陆幔小体,横跨几米至3公里,暴露在与北比利牛斯断裂平行的中生代沉积物狭窄的北比利牛斯山脉(NPZ)内。最近的研究表明,在与剥离构造有关的阿尔比-西诺曼尼亚比利牛斯​​山脉盆地形成期间,沿未来的NPZ发生了地幔发掘。本文回顾了比利牛斯蛇绿铁矿体的地质环境,并报告了比姆地区关键露头的新的详细现场数据。在比利牛斯山脉的超镁铁质岩体之间仅需区分两种类型的地质环境。在第一种类型(沉积型或S型)中,白云母以各种大小的碎屑形式出现,从白垩纪的单基因或多晶质碎屑流沉积物中的毫米级颗粒到百分度的橄榄石不等,并在主要的比例下对中生代沉积物进行再加工。 Lherz的身体。在第二种类型(构造类型或T型)中,地幔岩石形成与地壳构造透镜相关的百分之几至千分之一的切片。地壳和地幔构造透镜又与大量的强烈变形的三叠纪岩石系统地联系在一起,并且与属于NPZ覆盖层的侏罗纪和下白垩纪变形沉积单元发生断层接触。这些变形的中生代地层不早于阿普提安早期的阿尔比安。它们不均匀地覆盖着阿尔比亚-西诺曼尼亚的复理岩层,并经历了不同等级的高温-低压白垩纪中期变质作用。这种构造环境是暴露在比利牛斯山脉西部的大多数锂铁矿体的特征。这些地质数据首先提供了导致地幔掘出的分离构造的证据,其次强调了中生代盖层的重力滑动在比利牛斯山脉前造山运动中的作用。根据这些证据,可以推断出盆地发育的简单模型,包括地壳的极薄化和沿主要脱离断层的地幔起义。我们证明了地壳幔分离断层的近代发展和中生代覆盖层沿低角度断层的广义重力滑动,涉及三叠系盐矿作为构造底。该模型解释了比利牛斯山脉冲突前裂谷演化的基本特征。

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  • 来源
    《Tectonics》 |2010年第4期|p.TC4012.1-TC4012.26|共26页
  • 作者单位

    Geosciences Montpellier, UMR 5243, Universite Montpellier 2, CNRS, CC 60, Place E. Bataillon, F-34095 Montpellier CEDEX 5, France;

    rnGeosciences Montpellier, UMR 5243, Universite Montpellier 2, CNRS, CC 60, Place E. Bataillon, F-34095 Montpellier CEDEX 5, France;

    rnLMTG, UMR 5563, Universite Toulouse III, CNRS, Observatoire Midi-Pyrenees, 14 Ave. Edouard Belin, F-31400 Toulouse, France;

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