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States of paleostress north and south of the Periadriatic fault: Comparison of the Drau Range and the Friuli Southalpine wedge

机译:古生物学断层北部和南部的古应力状态:德劳山脉和弗留利南高山楔的比较

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摘要

This study focuses on the analysis of structures and kinematics of a N–S profile along the axis of maximum shortening of the European Eastern Alps. The area includes the southern Austroalpine unit in the north and the Southalpine unit, which is a part of the Adriatic indenter. The stratigraphically different units are separated by the Periadriatic fault, the major strike-slip fault within the Alps. In order to assess the kinematics of these units, mainly fault-slip data from north and south of the Periadriatic fault were analyzed. We distinguish a succession of five main kinematic groups in both units: (1) N–S compression; (2) NW–SE compression; (3) NE–SW compression, σ3 changes gradually from subvertical to subhorizontal; (4) N–S compression; and (5) NW–SE compression. Our study reveals that the deformation sequence on either sides of the PAF is similar. The mean orientations of the principal stress axes, however, show small, but consistent differences: The subhorizontal axes north of the Periadriatic fault plunge northward, in the south southward. A counterclockwise (CCW) rotation of the southern part in respect to the north is evident and in line with the well-known counterclockwise rotation of the Adriatic indenter as well as dextral displacement of the N-fanning stress-field along the Periadriatic fault. Opposing plunge directions are interpreted as a primary feature of the internal stress-field within an orogenic wedge further increased during ongoing compression.
机译:这项研究侧重于分析沿欧洲东部阿尔卑斯山最大缩短轴的南北剖面的结构和运动学。该地区包括北部的南部奥土高山单元和南亚高山单元,后者是亚得里亚海压痕的一部分。地层上不同的单元被阿尔卑斯山脉内的主要走滑断层-扇状断层隔开。为了评估这些单元的运动学,主要分析了Periadriatic断层北部和南部的断层滑动数据。我们在这两个单元中区分了五个主要的运动学组:(1)N–S压缩; (2)NW–SE压缩; (3)NE–SW压缩,σ3从垂直下逐渐变为水平以下; (4)N–S压缩; (5)NW–SE压缩。我们的研究表明,PAF两侧的变形顺序相似。但是,主应力轴的平均方向显示出很小但始终如一的差异:四叠纪断层以北的亚水平轴向北,向南向南滑动。南部相对于北部的逆时针(CCW)旋转是明显的,并且与亚得里亚压头的逆时针旋转以及沿扇形断裂的N扇形应力场的右旋位移相一致。相反的切入方向被解释为造山楔内内部应力场的主要特征,在持续的压缩过程中进一步增大。

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