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The accretion of foreland basin sediments during early stages of continental collision in the European Alps and similarities to accretionary wedge tectonics

机译:欧洲阿尔卑斯山大陆碰撞早期阶段前陆盆地沉积物的增加及其与增生楔构造的相似性

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摘要

We present structural observations from foreland basin sediments that were incorporated into the orogenic wedge of the central European Alps during early stages of continental collision. Our analysis focuses on the prograde evolution and considers the full history of the sediments ranging from their deposition in the basin to deep burial and metamorphism at temperatures of similar to 320 degrees C. The tectonic evolution is matched with constraints on the diagenetic alteration of the sediments. For this purpose, we calculate the temperatures and depths of sediment compaction and illitization as well as the associated fluid liberation. The data set highlights that the tectonic incorporation of the sediments into the orogenic wedge was strongly controlled by their diagenetic state. Earliest deformation took place during imbrication and frontal accretion of unconsolidated and fluid-saturated sediments. Ductile folding of the sediments occurred already at this stage and was assisted by particulate flow. With the progressive consolidation of the sediments the elastic strength increased, which resulted in an overall embrittlement. This rheological change is recorded by the onset of out-of-sequence thrusting, brittle faulting, and the formation of massive quartz-calcite veins, which took place in the approximate temperature range of the seismogenic zone (i.e., similar to 150-350 degrees C). Moreover, widespread pressure solution resulted in the formation of a penetrative cleavage and records slow but long-lasting deformation at low background strain rates. In summary, the prograde tectonic evolution of the frontal Alpine wedge exhibits many similarities with the structural and mechanical evolution of accretionary wedges at active subduction zones.
机译:我们介绍了前陆盆地沉积物的结构性观测结果,这些沉积物是在大陆碰撞早期阶段并入中欧阿尔卑斯山的造山楔中的。我们的分析侧重于前移演化,并考虑了沉积物的完整历史,从沉积物在盆地到深埋葬和变质(温度接近320摄氏度)。构造演化与沉积物成岩作用的约束相匹配。 。为此,我们计算了沉积物压实和未固结以及相关的流体释放的温度和深度。数据集突显出沉积物在造山楔中的构造整合受其成岩状态的强烈控制。最早的变形发生在未固结和流体饱和的沉积物的固结和额增过程中。在这个阶段已经发生了沉积物的延展性折叠,并且在颗粒流的帮助下。随着沉积物的逐步固结,弹性强度增加,从而导致整体脆化。流变学的变化是通过在地震发生带的大致温度范围内(即类似于150-350度)发生的无序逆冲,脆性断裂以及大量石英方解石脉的形成而记录的。 C)。此外,广泛的压力解决方案导致形成渗透性劈裂,并在低背景应变速率下记录了缓慢但持久的变形。综上所述,额叶高山楔的前移构造演化与活跃俯冲带增生楔的构造演化和力学演化有很多相似之处。

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  • 来源
    《Tectonics》 |2016年第10期|2216-2238|共23页
  • 作者单位

    Univ Bern, Inst Geol Sci, Bern, Switzerland;

    Univ Bern, Inst Geol Sci, Bern, Switzerland;

    Univ Bern, Inst Geol Sci, Bern, Switzerland;

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  • 正文语种 eng
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