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首页> 外文期刊>Physics and chemistry of the earth >Palaeomagnetism and geochemistry of Early Palaeozoic rocks of the Barrandian (Tepla-Barrandian Unit, Bohemian Massif): palaeotectonic implications
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Palaeomagnetism and geochemistry of Early Palaeozoic rocks of the Barrandian (Tepla-Barrandian Unit, Bohemian Massif): palaeotectonic implications

机译:Barrandian早古生代岩石的古磁性和地球化学(波希米亚断层带的Tepla-Barrandian单元):古构造意义

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The Barrandian area (the Tepla-Barrandian unit, Bohemian Massif) provided palaeomagnetic results on Early Palaeozoic rocks and chemical data on siliciclastic sediments of both Middle Cambrian and Early Ordovician to Middle Devonian sedimentary sequences; an outcoming interpretation defined source areas of clastic material and palaeotectonic settings of the siliciclastic rock deposition. The siliciclastic rocks of the earliest Palaeozoic sedimentation cycle, deposited in the Cambrian Pribram-Jince Basin of the Barrandian, were derived from an early Cadomian volcanic island arc developed on Neoproterozoic oceanic lithosphere and accreted to a Cadomian active margin of northwestern Gondwana. Inversion of relief terminated the Cambrian sedimentation, and a successory Prague Basin subsided nearby since Tremadocian. Source area of the Ordovician and Early Silurian shallow-marine siliciclastic sediments corresponded to progressively dissected crust of continental arc/active continental margin type of Cadomian age. Since Ordovician onwards both synsedimentary within-plate basic volcanics and older sediments had been contributing in recognizable proportions to the siliciclastic rocks. The siliciclastic sedimentation was replaced by deposition of carbonate rocks throughout late Early Silurian to Early Devonian period of with-drawal of the Cadomian clastic material source. Above the carbonates an early Givetian flysch-like siliciclastic suite completed sedimentation in the Barrandian. In times between Middle Cambrian and Early/Middle Devonian boundary interval an extensional tectonic setting prevailed in the Tepla-Barrandian unit. The extensional regime was related to Early Palaeozoic large-scale fragmentation of the Cadomian belt of northwestern Gondwana and origin of Armorican microcontinent assemblage. The Tepla-Barrandian unit was also engaged in a peri-equatorially oriented drift of Armorican microcontinent assemblage throughout the Early Palaeozoic: respective palaeolatitudes of 58°S (Middle Cambrian) and 17°S (Middle Devonian) were inferred for the Barrandian rocks. The Middle Devonian flysch-like siliciclastics of the Prague Basin suggest a reappearance of the deeply dissected Cadomian source area in a proximity of the Barrandian due to early Variscan convergences and collisions of the Armorican microcontinents. Significant palaeotectonic rotations are palaeomagnetically evidenced to take place during oblique convergence and final docking of the Tepla-Barrandian microplate within the Variscan terrane mosaic of the Bohemian Massif.
机译:Barrandian地区(Tepla-Barrandian单元,波希米亚地块)提供了早古生代岩石的古磁结果以及中寒武纪和早奥陶纪至中泥盆纪沉积序列的硅质碎屑化学数据;即将发表的解释定义了碎屑物质的源区和硅质碎屑沉积的古构造背景。最早的古生代沉积时代的硅质碎屑岩沉积在Barrandian的寒武纪Pribram-Jince盆地中,源自新元古代海洋岩石圈上发育的早期Cadomian火山岛弧,并沉积到冈瓦纳西北部的Cadomian活动边缘。浮雕的倒转终止了寒武纪的沉积,自特雷莫多克以来,一个连续的布拉格盆地逐渐消退。奥陶纪和志留纪早期浅海硅质碎屑沉积物的源区对应于Cadomian时代大陆弧/活动大陆边缘类型的渐进地壳。自奥陶纪以来,同沉积的板内基本火山作用和较早的沉积物一直对硅质碎屑岩构成可识别的比例。硅质碎屑沉积被志留纪晚期晚期至泥盆纪早期的碳酸盐岩沉积所取代,撤出了卡多姆碎屑物质源。在碳酸盐岩之上,早期的纪梵天类似弗里施的硅质碎屑岩组在巴兰阶完成了沉积。在中寒武纪和早/中泥盆纪边界区间之间的时间段,Tepla-Barrandian单元普遍存在伸展构造环境。伸展方式与冈瓦纳西北部的卡多布带的早期古生代大规模破碎和阿莫里肯微大陆组合的起源有关。在整个早古生代,Tepla-Barrandian单元还参与了Armorican微大陆组合的沿赤道方向的漂移:推论得出Barrandian岩石分别为58°S(中寒武纪)和17°S(中泥盆纪)的古纬度。布拉格盆地的中泥盆纪类复理斯状硅质碎屑岩表明,由于早期的瓦里斯坎收敛和阿莫里坎微大陆的碰撞,在巴兰德地区附近重新出现了深层剖析的卡多马源区。在古波西米亚地块的Variscan地层镶嵌中,Tepla-Barrandian微板的倾斜会聚和最终对接期间,古地磁发生了明显的旋转。

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