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Seismic reflection imaging over the South Portuguese Zone fold-and-thrust belt, SW Iberia

机译:南葡萄牙地区褶皱-冲断带,西南伊比利亚地震反射成像

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We reprocessed an ~35-km-long part of the IBESREIS seismic reflection profile which runs over the Iberian Pyrite Belt section of the South Portuguese Zone, SW Iberia, with the goal to image the upper crust (<15-km depth). The applied processing sequence enhanced numerous prominent reflections and diffraction patterns within the uppermost 5-s travel time relative to high-amplitude source-generated noise. A complex subsurface characterized by conflicting dips and a survey following winding roads require a crooked-line prestack migration scheme for coherent imaging. To interpret sources of diffracted energy, we additionally employed a diffraction imaging scheme which enhances diffractions at the expense of reflections.The final seismic images show south-vergent imbricate fold-and-thrust tectonics, documenting the contractive deformation that the South Portuguese Zone experienced during the Variscan Orogeny. Based on surface geological information, we correlate a low reflective unit with the shallow Upper Carboniferous Flysch Group, a highly reflective unit ranging in depth from 2 to 4 km with the Middle Carboniferous Volcano–Sedimentary Complex Group, which hosts massive sulfide deposits, and a moderately reflective unit with the Upper Devonian Phyllite–Quartzite Group. Below these units, another low-reflective facies is present, which may represent older Paleozoic metasediments. In addition, the seismic and diffraction images reveal bands of high reflectivity and distinct diffraction patterns that were interpreted as extensive layered mafic intrusions. These proposed mafic bodies may be related to the same event that triggered a huge hydrothermal activity assumed in Early Carbonifereous times.
机译:我们对IBESREIS地震反射剖面的约35公里长的部分进行了重新处理,该剖面遍及西南伊比利亚西南葡萄牙地区的伊比利亚黄铁矿带部分,目的是成像上地壳(深度小于15公里)。相对于高振幅源产生的噪声,所施加的处理序列在最短的5s传播时间内增强了许多突出的反射和衍射图样。复杂的地下岩层具有相互矛盾的倾角,并在蜿蜒的道路进行勘测后,需要采用弯曲线叠前偏移方案进行相干成像。为了解释衍射能量的来源,我们还采用了一种衍射成像方案,以牺牲反射为代价增强了衍射效果。最终的地震图像显示了南缘的岩性褶皱和逆冲构造,记录了南葡萄牙语带在此期间经历的收缩变形。 Variscan造山运动。根据地表地质信息,我们将低反射单元与浅层石炭统弗里施群相关联,将高反射单元的深度在2-4 km范围内与中石炭纪火山-沉积复合群相关联,该群拥有大量硫化物矿床,并且上泥盆世辉绿岩-石英岩群为中等反射单元。在这些单元之下,存在另一个低反射相,这可能代表了较古老的古生代沉积。此外,地震和衍射图像还显示出高反射率带和明显的衍射图样,这些图谱被解释为广泛的层状镁铁质侵入体。这些提议的镁铁质体可能与同一事件有关,该事件触发了石炭纪早期假定的巨大热液活动。

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