法国东北部的福日山脉和德国西南部的施瓦兹瓦尔德地区的构造:来自泥盆-石炭系活动边缘盆地及其变形的证据

Marc Krecher, J. Behrmann
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引用次数: 7

摘要

泥盆纪-石炭纪的沉积岩和火山岩在南施瓦兹瓦尔德的Badenweiler-Lenzkirch带(BLZ)和南孚日山脉(中欧)暴露。确定了几个岩性地层单元。通过比较沉积相和火山相组合以及岩石学和地球化学数据集,可以了解某些单元之间的沉积或构造关系。在瓦里斯坎造山运动期间,沉积物沉积在沿活动边缘的不同类型的盆地中。它们的变形是在孚日山脉南部的马克斯坦地区进行研究的,在这里详细介绍。一些观点认为,在中伏日山脉和施瓦茨瓦尔德的结晶单元之下,有一个狭窄的上泥盆纪前弧后盆地向北逆冲。从上泥盆世到下石炭世晚期,陆壳持续增生,具有深海相弧后前陆盆地的特征。它已经积累了大约3500米的浊积砂岩、页岩和火山-深部成因的砾岩,现在组成了孚日山脉南部的马克斯坦群。在Markstein群以南,奥登盆地充满了深海相富泥浊积体系和浅层向上的河流三角洲沉积序列,在图尔纳世晚期和维西世早期沉降。俯冲型火山作用以拉斑玄武岩、k -钙碱性岛弧安山岩和大陆弧砂岩的形式出现。与以前的模型相反,Markstein和Oderen集团之间的遗传关系在这里被拒绝了。相反,空间和时间上不同的俯冲体系导致了活动边缘盆地的发育。出露沉积单元的瓦里斯坎变形始于上维西统。Markstein群的运动学指标和宏观结构的结构分析提供了逆冲和右压剪切的证据,形成了沿中部孚日河结晶单元南部边界的正花结构。这与中伏日山脉和施瓦茨瓦尔德北部边界的Lalaye-Lubine/Baden - Baden断层以及中、南施瓦茨瓦尔德之间的“过渡复合体”的右向挤压变形大致同步。高钾钙碱性metzal花岗岩后运动学侵入主位移带,其位置类似于BLZ北部边缘的右剪切花岗岩组合。由于沿东向Markstein断裂的右向挤压运动,在上维西统形成了Oderen群和Markstein群并置。在长时间的增生构造和双向右挤压作用的背景下,讨论了上维尚期中伏日山脉和施瓦兹瓦尔德地区优质变质岩的发掘,认为地壳挤压是主要的发掘过程。对南伏日山脉的表壳岩石及其变形模式的深入研究有助于我们确定其与BLZ的关系,并有助于重建Armorica - Proto-Alpine - Gondwana连接的古地理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tectonics of the Vosges (NE France) and the Schwarzwald (SW Germany): evidence from Devonian-Carboniferous active margin basins and their deformation
Devonian-Carboniferous sedimentary and volcanic rocks are exposed in the Badenweiler-Lenzkirch Zone (BLZ) of the Southern Schwarzwald and in the Southern Vosges (Central Europe). Several lithostratigraphic units are recognized. Sedimentary or tectonic relations between some of the units can be realized by comparing sedimentary and volcanic facies associations as well as petrographic and geochemical datasets. During the Variscan orogenesis the sediments were deposited in different kinds of basins along an active margin setting. Their deformation was studied in the Markstein area of the Southern Vosges and is presented here in detail. Some arguments favour a northward underthrusting of a narrow and oceanic pre-Upper Devonian back-arc basin beneath the crystalline units of the Central Vosges and Schwarzwald. Accretion of continental crust continued from the Upper Devonian to the late Lower Carboniferous along with a characteristical evolution of a deep marine retro-arc foreland basin. It has accumulated about 3500 m of turbidite sandstones, shales and conglomerates of volcano-plutonic origin, assembling now the Markstein Group in the Southern Vosges. To the south of the Markstein Group, deep marine mud-rich turbidite systems and a shallowing-upward succession of fluvio-deltaic sediments filled in the Oderen Basin, which subsided in the late Tournaisian and early Visean. A subduction type volcanism occurred in form of tholeiitic basalts, K-calcalkaline island arc andesites and continental arc sandstones. In contrast to former models, a genetical relationship between the Markstein and the Oderen Group is rejected here. Instead, different subduction systems in space and time have caused the development of the active margin basins. The Variscan deformation of the exposed sedimentary units started in the upper Visean. Structural analysis of kinematic indicators and macroscopic fabrics in the Markstein Group give evidence for thrusting and dextrally transpressive shearing, forming a positive flower structure along the southern border of the Central Vosges crystalline units. This was broadly synchronous with dextrally transpressive deformation along the Lalaye-Lubine/Baden Baden fault at the northern border of the Central Vosges and Schwarzwald and along the "Transition Complex" between the Central and the Southern Schwarzwald. The high-K-calcalkaline Metzeral granite intruded postkinematically into the principal displacement zone and has a position similar to the dextrally sheared Randgranite association along the northern border of the BLZ. A juxtaposition between the Oderen and the Markstein Groups was achieved in the upper Visean due to the dextral transpressive motion along the ESE-trending Markstein Fault. The exhumation of high grade metamorphic rocks of the Central Vosges and Schwarzwald during the upper Visean is discussed in the context of long lasting accretionary tectonics and the two-sided dextral transpression, favouring crustal extrusion as a main exhumation process. A thorough examination of the supracrustal rocks and their mode of deformation in the Southern Vosges helps us to determine the relationships with the BLZ and contributes also to the paleogeographic reconstruction of the Armorica - Proto-Alpine - Gondwana connection.
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