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首页> 外文期刊>Tectonics >The tectonic evolution of a critical segment of the Dinarides-Alps connection: Kinematic and geochronological inferences from the Medvednica Mountains, NE Croatia
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The tectonic evolution of a critical segment of the Dinarides-Alps connection: Kinematic and geochronological inferences from the Medvednica Mountains, NE Croatia

机译:Dinarides-Alps连接的关键部分的构造演化:克罗地亚东北梅德韦德尼察山脉的运动学和地质年代学推论

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摘要

The transition zone between the Alps and Dinarides is a key area to investigate kinematic interactions of neighboring orogens with different subduction polarities. A study combining field kinematic and sedimentary data, microstructural observations, thermochronological data (Rb-Sr and fission track), and regional structures in the area of Medvednica Mountains has revealed a complex polyphase tectonic evolution. We document two novel stages of extensional exhumation. The first stage of extension took place along a Late Cretaceous detachment following the late Early Cretaceous nappe stacking, burial, and greenschist facies metamorphism. Two other shortening events that occurred during the latest Cretaceous-Oligocene were followed by a second event of extensional exhumation, characterized by asymmetric top-NE extension during the Miocene. Top-NW thrusting took place subsequently during the Pliocene inversion of the Pannonian Basin. The Cretaceous nappe burial, Late Cretaceous extension, and the Oligocene(-Earliest Miocene) contraction are events driven by the Alps evolution. In contrast, the latest Cretaceous-Eocene deformation reflects phases of Dinaridic contraction. Furthermore, the Miocene extension and subsequent inversion display kinematics similar with observations elsewhere in the Dinarides and Eastern Alps. All these processes demonstrate that the Medvednica Mountains were affected by Alpine phases of deformations to a much higher degree than previously thought. Similarly with what has been observed in other areas of contractional polarity changes, such as the Mediterranean, Black Sea, or New Guinea systems, the respective tectonic events are triggered by rheological weak zones which are critical for localizing the deformation created by both orogens.
机译:阿尔卑斯山和第纳里德斯之间的过渡带是研究相邻俯冲极性不同的造山带运动学相互作用的关键区域。一项结合野外运动学和沉积学数据,微观结构观测,热年代学数据(Rb-Sr和裂变径迹)以及梅德韦德尼察山脉地区的区域结构的研究显示了复杂的多相构造演化。我们记录了延伸掘尸的两个新阶段。伸展的第一阶段是在白垩纪晚期推覆层堆积,埋藏和绿片岩相变质之后,沿着白垩纪晚期脱离。在最近的白垩纪-渐新世发生的另外两个缩短事件之后,发生了第二次伸展性发掘事件,其特征是在中新世期间顶部NE不对称伸展。随后,在Pannonian盆地的上新世反演期间发生了顶西北冲。白垩纪滑石埋葬,白垩纪晚期伸展和渐新世(最早的中新世)收缩是阿尔卑斯山脉演化的驱动因素。相反,最新的白垩纪-始新世变形反映了二叠纪收缩的阶段。此外,中新世伸展和随后的反转显示的运动学与第纳里德和东阿尔卑斯山其他地方的观测相似。所有这些过程表明,梅德韦德尼察山脉受到高山变形阶段的影响比以前认为的要高得多。与在其他收缩极性变化区域(例如地中海,黑海或新几内亚系统)中观察到的情况类似,相应的构造事件是由流变薄弱带触发的,这对于定位两个造山带产生的变形至关重要。

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  • 来源
    《Tectonics》 |2015年第10期|1952-1978|共27页
  • 作者单位

    Univ Utrecht, Fac Geosci, Utrecht, Netherlands|Vrije Univ Amsterdam, Fac Earth & Life Sci, Amsterdam, Netherlands;

    Univ Utrecht, Fac Geosci, Utrecht, Netherlands;

    Univ Utrecht, Fac Geosci, Utrecht, Netherlands;

    Univ Zagreb, Fac Min Geol & Petr Engn, Zagreb 41000, Croatia;

    Vrije Univ Amsterdam, Fac Earth & Life Sci, Amsterdam, Netherlands;

    Univ Arizona, Dept Geosci, Tucson, AZ 85721 USA|Univ Bucharest, Fac Geol & Geophys, Bucharest, Romania;

    Univ Utrecht, Fac Geosci, Utrecht, Netherlands;

    Univ Zagreb, Fac Min Geol & Petr Engn, Zagreb 41000, Croatia;

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