首页> 外文期刊>Journal of the Geological Society >Crustal-scale subsidence and uplift caused by metamorphic phase changes in the lower crust: a model for the evolution of the Loppa High area, SW Barents Sea from late Paleozoic to Present
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Crustal-scale subsidence and uplift caused by metamorphic phase changes in the lower crust: a model for the evolution of the Loppa High area, SW Barents Sea from late Paleozoic to Present

机译:下地壳变质相变引起的地壳沉降和提升:Loppa高地演化的模型,古生代晚期古生代株

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摘要

The Loppa High area has been subject to several events of uplift and subsidence from the Late Paleozoic to Present. The driving mechanisms behind the vertical movements, however, are not fully understood. We propose that uplift and subsidence were influenced by the combination of density changes caused by metamorphic phase changes in a 90 x 140 km wide mafic lower crustal body below the Loppa High and local (rift-related) and far-field stress. Through a numerical modelling approach we analyse the tectonically induced variations in pressure and temperature in the lower crust, their influence on phase changes in the mafic body and the affiliated vertical movements. Results show that (1) densification of the mafic body caused by far-field compression associated with the late Triassic westward translation of Novaya Zemlya could cause surface subsidence, (2) heat and fluid influx provided by early Cretaceous rifting could trigger density reduction and surface uplift and (3) the present-day geometry of the Loppa High as observed in seismic data can be reproduced by combining the modelled effect of rift flank uplift and phase changes in the mafic body. Phase change-driven vertical movements may also have affected other structural highs in the western Barents Sea, including the Stappen High.
机译:Loppa高地一直受到几个隆起和沉降的事件,从古生代到呈现。然而,垂直运动背后的驱动机制尚不完全理解。我们提出了隆起和沉降的影响受到在LopPA高和局部(裂口相关)和远场胁迫下方的90×140公里宽的麦克风较低的地壳体内引起的密度变化的结合。通过数值建模方法,我们分析了下壳体中的压力和温度的根本诱导的变化,它们对MAFIC体内的相变的影响和附属垂直运动。结果表明,(1)抗议者致密化由与晚期三叠纪的西方视线相关的远场压缩引起的诺亚Zemlya的翻译可能导致表面沉降,(2)通过早期白垩纪河流提供的热量和流体涌入可以触发密度减小和表面隆起和(3)可以通过组合裂隙侧面隆起和乳头体变化的模型效果来再现如地震数据中观察到的LopPa高的当前几何学。相变驱动的垂直运动也可能影响西部的海外海海中的其他结构高,包括卡兹登高。

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  • 来源
    《Journal of the Geological Society》 |2018年第3期|共12页
  • 作者单位

    Univ Oslo Res Ctr Arctic Petr Explorat ARCEx Dept Geosci Sem Saelands Vei 1 N-0371 Oslo Norway;

    Univ Oslo Res Ctr Arctic Petr Explorat ARCEx Dept Geosci Sem Saelands Vei 1 N-0371 Oslo Norway;

    Univ Oslo Res Ctr Arctic Petr Explorat ARCEx Dept Geosci Sem Saelands Vei 1 N-0371 Oslo Norway;

    Univ Oslo Res Ctr Arctic Petr Explorat ARCEx Dept Geosci Sem Saelands Vei 1 N-0371 Oslo Norway;

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  • 正文语种 eng
  • 中图分类 地质学;
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