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Formation of basins and mountain ranges in Attica (Greece): The role of Miocene to Recent low-angle normal detachment faults

机译:阿提卡(希腊)盆地和山脉的形成:中新世对近期低角度正断层断裂的作用

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In seismically active regions, active low-angle detachment faults are probably more frequent as is commonly thought and may play an important but still underestimated role in the evolution of landforms and basins. We investigate the tectonically active region of Attica (Greece) in the Aegean back arc as a model region to show how basins and mountain ranges commonly thought to be formed by movements on high-angle normal faults in fact reflect the surface expression of displacements on yet undetected, deep-seated, active low-angle normal detachment faults. Inferences are made based on an integrated study of Attica linking the petrology of clastic sediments with geomorphology and structures, and including few new palynological data. From the Miocene to Recent, three sets of normal detachment fault systems were successively active. Shear zones of the 1st (Early Miocene) stage emplaced rocks of the Attic Cycladic high-P metamorphic belt (AC-HP-belt) from depth corresponding to greeschist facies conditions in the brittle, upper crust. In the 2nd stage the WNW dipping Attica low-angle normal detachment fault system between the AC-HP-belt and the un- or weakly metamorphosed rocks of the sub-Pelagonian Zone (SPZ) was active. Clastic sedimentation started in the Late Miocene, during the 2nd stage. Late Miocene and Early Pliocene clastic sediments reveal that during the 2nd stage many areas that presently expose the AC-HP-belt were still covered by the overlying SPZ. Also, now uplifted areas such as the Parnitha mountain range that currently undergo strong erosion were then the sites of sedimentary sinks. The 3rd stage (Late Pliocene through Recent) is associated with dramatic changes in the morphology and recurring steepening of the relief. Reversal of the Parnitha area from the site of deposition into the site of erosion is associated with deposition of coarse conglomerates to the SE of the Parnitha Mt. and S of the Penteli Mt. Sediments of the 3rd stage reflect activity of the here newly described, SSE-dipping Penteli-Athens low-angle detachment fault (PADF) system formed at a high angle to the Attica detachment fault. The outcome of this study is that the present-day geomorphology is to a high degree related to the operation of the PADF system. Steep fault bounding the Athens and Mesogea basins as well as the mountain ranges (Parnitha, Penteli. Hymittos mounts) belongs to its breakaway zone or root into the PADF. Ongoing tectonic movements related to this fault system were responsible for the 1999 Athens (Mw = 6.0) earthquake. We particularly discuss how the PADF may continue into greater depth, the translation magnitude, and how the PADF fits into the wider kinematic framework of the Aegean region.
机译:在地震活跃地区,活跃的低角度脱离断层可能像通常认为的那样更为频繁,并且可能在地貌和盆地的演化中起着重要但仍被低估的作用。我们以爱琴海后弧为例,研究了阿提卡(希腊)的构造活动区域,以显示通常被认为是由高角度正断层运动形成的盆地和山脉实际上反映了位移的表面表达。未检测到的,深层的,活动的低角度法向脱离断层。推论是基于对Attica的综合研究得出的,该研究将碎屑沉积物的岩石学与地貌和结构联系起来,并且几乎没有新的孢粉学数据。从中新世到最近,三套正常脱离断层系统相继活跃。第一阶段(中新世早期)的剪切带从与脆性上地壳的希腊相相状的深度对应的位置把阁楼基克拉迪基高P变质带(AC-HP-带)围成的岩石。在第二阶段中,AC-HP带与副Pelagonian带(SPZ)的未变质或弱变质岩石之间的WNW浸入式Attica低角度法向断裂系统活跃。在第二阶段中新世晚期开始碎屑沉积。中新世晚期和上新世早期碎屑沉积表明,在第二阶段,目前暴露于AC-HP带的许多区域仍被上覆的SPZ覆盖。同样,现在隆起的地区,如帕尼塔山山脉,目前正在遭受严重的侵蚀,这就是沉积汇的位置。第三阶段(从上新世晚期到最近)与形态的剧烈变化和浮雕的不断变陡相关。帕尼萨地区从沉积位置向侵蚀位置的逆转与粗砾岩的沉积到帕尼萨山的东南部有关。和Penteli山的S。第三阶段的沉积物反映了这里新描述的,与阿提卡分离断层成大角度形成的SSE浸入的Penteli-Athens低角度分离断层(PADF)系统的活动。这项研究的结果是,当今的地貌在很大程度上与PADF系统的运行有关。雅典断层和Mesogea断层以及山脉(Parnitha,Penteli。Hymittos山脉)的陡峭断层属于其分离带或扎根于PADF。与该断层系统有关的正在进行的构造运动是造成1999年雅典(Mw = 6.0)地震的原因。我们特别讨论了PADF如何继续延伸到更大的深度,平移幅度,以及PADF如何适合爱琴海地区的更广泛的运动学框架。

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