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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Heterogeneous tectonic inversion of the Mid-Polish Trough related to crustal architecture, sedimentary patterns and structural inheritance
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Heterogeneous tectonic inversion of the Mid-Polish Trough related to crustal architecture, sedimentary patterns and structural inheritance

机译:中波兰海槽的异质构造反转与地壳构造,沉积模式和结构遗传有关

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Using a 3-D structural model, we performed a basin-scale analysis of the tectonically inverted Mid-Polish Swell, which developed above the NW-SE-oriented Teisseyre-Tornquist Zone. The later separates the Paleozoic West European Platform from the Precambrian East European Craton. The model pen-nits a comparison between the present depths and sedimentary thicknesses of five layers within the Permian-Mesozoic and Cenozoic successions. The inversion of the NW-SE-trending Mid-Polish Trough during the Late Cretaceous-Paleogene resulted in uplift of a central horst, the Mid-Polish Swell, bounded by two lateral troughs. These structural features are induced by squeezing of a weak crust along the Teisseyre-Tornquist Zone. The swell is characterized by an inherited segmentation which is due to NE-SW transversal faults having crustal roots. From NW to SE, we distinguish the Pomeranian, Kujavian, and Malopolska segments, that are separated by two transversal faults. During the inversion. the Zechstein salt occurring in the Pomeranian and Kujavian segments in the NW acted as decoupling level between the basement and the post-salt cover, leading to disharmonic deformation. Conversely, because no salt occurs in the SE, both basement and cover were jointly deformed. The vertical tectonic uplift at the surface is estimated to amount to 3 km in the Malopolska segment. The structural inheritance of the basement is expressed by the heterogeneous geometry of the swell and tectonic instability during Mesozoic sedimentation. The reasons for the inheritance are seen in the mosaic-type Paleozoic basement SW of the Teisseyre-Tornquist Zone, contrasting the Precambrian East European Craton which acted as a stable buttress in the NE. The horst and trough geometry of Cenozoic sediments blanketing the Mid-Polish swell reveals the ongoing intracontinental compressional stress in Poland. (C) 2003 Elsevier B.V. All rights reserved. [References: 66]
机译:使用3-D结构模型,我们对构造反转的中波兰隆起进行了盆地尺度的分析,该隆起发育于西北NSE导向的Teisseyre-Tornquist区之上。后者将古生代西欧平台与前寒武纪东欧克拉通区分开。该模型对二叠纪-中生代和新生代演替过程中五层的当前深度和沉积厚度之间进行了比较。白垩纪-古近纪晚期,NW-SE趋势的中波谷反转,导致中央地壳隆起,中波隆起,以两个侧向波谷为界。这些结构特征是由沿Teisseyre-Tornquist区的弱地壳挤压引起的。膨胀的特征是继承的分段,这是由于具有地壳根的NE-SW横向断层所致。从西北到东南,我们区分了被两个横向断层分开的波美拉尼亚,库贾维安和马洛波尔斯卡段。在反演期间。西北地区的波美拉尼亚和库贾维亚河段中发生的Zechstein盐起基底和盐后盖之间的解耦作用,导致失谐变形。相反,由于SE中没有盐,所以地下室和覆盖层会共同变形。在Malopolska段,地表的垂直构造隆升估计达3 km。中生代沉积过程中膨胀的非均质几何和构造的不稳定性表达了地下室的结构特征。遗传的原因可以在Teisseyre-Tornquist区的马赛克型古生代地下室SW中看到,与前寒武纪东欧克拉通形成对比,后者在东北部起着稳定的支撑作用。波兰中部隆起的新生代沉积物的槽形和槽形揭示了波兰持续的陆内压应力。 (C)2003 Elsevier B.V.保留所有权利。 [参考:66]

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