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Tectonic evolution of an intraplate basin: the Lower Tagus Cenozoic Basin, Portugal

机译:腔内盆地的构造演变:葡萄牙塔比塔比亚古代族盆地

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摘要

This article focuses on the reinterpretation of well, seismic reflection, magnetic, gravimetric, surface wave and geological surface data, together with the acquisition of seismic noise data to study the Lower Tagus Cenozoic Basin tectono-sedimentary evolution. For the first time, the structure of the base of the basin in its distal and intermediate sectors is unravelled, which was previously only known in the areas covered by seismic reflection data (distal and small part of intermediate sectors). A complex geometry was found, with three subbasins delimited by NNE-SSW faults and separated by WNW-ESE to NW-SE oriented horsts. In the area covered by seismic reflection data, four horizons were studied: top of the Upper Miocene, Lower to Middle Miocene top, the top of the Palaeogene and the base of Cenozoic. Seismic data show that the major filling of the basin occurred during Upper Miocene. The fault pattern affecting Neogene and Palaeogene units derived here points to that of a polyphasic basin. In the Palaeogene, the Vila Franca de Xira (VFX) and a NNE-SSW trending previously unknown structure (ABC fault zone) probably acted as the major strike-slip fault zones of the releasing bend of a pull-apart basin, which produced a WNW-ESE to NW-SE fault system with transtensional kinematic. During the Neogene, as the stress regime rotated anticlockwise to the present NW-SE to WNW-ESE orientation, the VFX and Azambuja fault zones acted as the major transpressive fault zones and Mesozoic rocks overthrusted Miocene sediments. The reactivation of WNW-ESE to NW-SE fault systems with a dextral strike-slip component generated a series of horsts and grabens and the partitioning of the basin into several subbasins. Therefore, we propose a polyphasic model for the area, with the formation of an early pull-apart basin during the Palaeogene caused by an Iberia-Eurasia plates collision that later evolved into an incipient foreland basin along the Neogene due to a NW-SE to WNE-ESE oriented Iberia-Nubia convergence. This convergence is producing uplift in the area since the Quaternary except for the Tagus estuary subbasin around the VFX fault, where subsidence is observed. This may be due to the locking or the development of a larger component of strike-slip movement of the NNE-SSW to N-S thrust fault system with the exception of the VFX fault, which is more favourably oriented to the maximum compressive stress.
机译:本文重点介绍了对井,地震反射,磁,重量,表面波和地质表面数据的重新诠释,以及获取地震噪声数据,以研究下塔斯新生代盆地构造沉积演化。首次,盆地的基部的结构在其远端和中间扇区上被解开,这在以前仅在被地震反射数据(中间扇区的远端和小部分)所覆盖的区域中。发现了复杂的几何形状,有三个子禁止的子酶,由NNE-SSW故障分隔,并通过WNW-ESE分离为NW-SE导向的Horsts。在地震反射数据所涵盖的区域中,研究了四个视野:上部内肾上腺素顶部,较低到中间内海洋顶部,甘蔗顶部和新生代基地。地震数据表明,上部内突期间盆地的主要填充发生。影响Neogene和古烯单元的故障模式衍生在这里指向多色盆地的那些。在古烯中,Vila Franca de Xira(VFX)和NNE-SSW趋势先前未知的结构(ABC断层区)可能是释放盆地的释放弯曲的主要防撞断层区,这产生了WNW-ESE通过静态运动的NW-SE故障系统。在Neogene期间,由于压力调节逆时针逆时针旋转至当前的NW-SE至WNW-ESE取向,因此VFX和Azambuja断层区作用为主要的静压断层区和中生岩岩石覆都覆盖了内突沉积物。 WNW-ESE对NW-SE故障系统的重新激活,具有右旋滑动分量产生一系列HORSTS和GRABREN和盆地分配到几个子酶标中。因此,我们为该地区提出了一种多相模型,在由伊比利亚 - 欧亚平板碰撞中形成早期的拉链盆地,后来由于NW-SE沿着Neogene演变成闪闪发光的前陆盆地。 WNE-ESE取向伊比利亚 - Nubia收敛。这种收敛性在该区域产生隆起,因为除了围绕VFX故障周围的塔比河口子比赛的塔巴斯ZFX故障的区域之外的隆起。这可能是由于锁定或开发NNE-SSW的较大分量的较大分量,除VFX故障之外,该锁定故障系统除了VFX故障之外,这更有利地取向最大压缩应力。

著录项

  • 来源
    《Basin research》 |2017年第5期|共22页
  • 作者单位

    Lab Nacl Energia &

    Geol Apartado 7586 P-2610999 Amadora Portugal;

    Lab Nacl Energia &

    Geol Apartado 7586 P-2610999 Amadora Portugal;

    Lab Nacl Energia &

    Geol Apartado 7586 P-2610999 Amadora Portugal;

    Lab Nacl Energia &

    Geol Apartado 7586 P-2610999 Amadora Portugal;

    Lab Nacl Energia &

    Geol Apartado 7586 P-2610999 Amadora Portugal;

    Univ Evora Dept Fis Evora Portugal;

    Univ Evora Dept Fis Evora Portugal;

    Lab Nacl Energia &

    Geol Apartado 7586 P-2610999 Amadora Portugal;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 盆地、平原、草原;
  • 关键词

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