西喀尔巴阡山脉大规模旋转的最后一幕,反映在古地磁约束中

IF 0.4 Q4 ENVIRONMENTAL SCIENCES Geology, Geophysics and Environment Pub Date : 2020-10-16 DOI:10.7494/geol.2020.46.2.109
E. Márton
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引用次数: 3

摘要

本文综述了制约西喀尔巴阡山脉后古近纪构造发育的古地磁结果。其中一组结果与西喀尔巴阡山脉的西里西亚、杜克拉和马古拉推覆体第三纪晚期的褶皱和逆冲作用有关,这些结果来自古近纪-中新世下的复理石质沉积物。折叠前和折叠后的剩余物均显示相对于当前取向的CCW垂直轴旋转约50°。相对于稳定的欧洲,这大约是60°的旋转。因此,至少在中新世中期以前,西里西亚和更多的内部推覆构造的总体走向是北西-东南。CCW垂直轴的旋转与中喀尔巴阡古近系盆地的垂直轴旋转一致。从侵入皮埃宁-克利彭带和马古拉推覆体南部的皮埃宁安山岩以及喀尔巴阡山脉外围和中西部新近纪开辟的山内盆地的古地磁资料可以估计出旋转的终止。安山岩的古地磁矢量分为两组。第一组显示相对于北方大约45°的CCW旋转,而第二组显示没有旋转。根据我们目前的知识,一些安山岩体可能是在18ma左右侵入的,这是Wzar Mts侵入的最古老的同位素年龄,而其他一些安山岩体可能是在旋转之后侵入的,大约在11ma左右,这是Brijarka采石场最年轻的同位素年龄。在位于马古拉推覆体和中央喀尔巴阡古近纪盆地的奥拉瓦—诺伊塔格山内盆地中,在11.6 Ma以上的沉积物中也观察到垂直轴CCW旋转。然而,这种旋转与断裂带活动有关,而不是归因于外西喀尔巴阡推覆体系的普遍旋转。位于马古拉推覆体上的Nowy Sącz山内盆地的古地磁结果和喀尔巴阡山脉中部的图里奇山内盆地的古地磁结果均不显示垂直轴旋转。在第一种情况下,旋转终止的松散控制年龄限制在12 Ma左右。来自第二个盆地的约束结果表明,旋转肯定结束了8 Ma。基于上述观测,并考虑到对山内盆地沉积形成和变形的年龄控制往往不严格的问题,我们初步认为,喀尔巴阡山脉中西部以及马古拉、杜克拉和西里西亚推覆体的大规模CCW旋转可能开始于18 Ma之后,结束于11 Ma左右。
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Last scene in the large scale rotations of the Western Carpathians as reflected in paleomagnetic constraints
This paper provides an overview of the paleomagnetic results which constrain the post-Paleogene tectonic development of the Western Carpathians. A group of these results are relevant to the last stage of the Tertiary folding and thrusting of the Silesian, Dukla and Magura nappes of the Outer Western Carpathian and were obtained from Paleogene-Lower Miocene flysch sediments. Both the pre- and post-folding remanences indicate about 50° CCW vertical axis rotation with respect to the present orientation. This is about a 60° rotation relative to stable Europe. It follows that the general orientation of the Silesian and more internal nappes were NW-SE, at least until the mid-Miocene. The CCW vertical axis rotation was co-ordinated with that of the Central Carpathian Paleogene Basin. The termination of the rotation can be estimated from the paleomagnetic data available from the Pieniny andesites which intruded the Pieniny Klippen Belt and the southern part of the Magura Nappe as well as from those obtained for the Neogene intramontane basins which opened up in the Outer and in the Central Western Carpathians. The paleomagnetic vectors for the andesites form two groups. The first group suggests about 45° CCW rotation relative to north, while the second shows no rotation. At the present stage of our knowledge it seems likely that some of the andesite bodies were intruded around 18 Ma, which is the oldest isotope age for the intrusions of the Wzar Mts, while some other bodies could have been emplaced after the rotation, around 11 Ma, which is the youngest isotope age for the Brijarka quarry. Vertical axis CCW rotation was also observed on sediments older than 11.6 Ma in the Orava-Nowy Targ Intramontane Basin which saddles the Magura Nappe and the Central Carpathian Paleogene Basin. However, this rotation was related to fault zone activity and was not attributed to the general rotation of the Outer Western Carpathian nappe system. Paleomagnetic results from the Nowy Sącz Intramontane Basin, which opened over the Magura Nappe, and those for the Central Western Carpathian Turiec Intramontane Basin do not indicate vertical axis rotation. In the first case, the loosely controlled age limit of the termination of the rotation is around 12 Ma. Well constrained results from the second basin imply that the rotation was definitely over by 8 Ma. Based on the above observations, and aware of the problem of often loose age control on the formation and deformation of the deposits of the intramontane basins, it is tentatively concluded that the large scale CCW rotation of the Central Western Carpathians, together with the Magura, Dukla and Silesian nappes, must have started after 18 Ma and terminated around 11 Ma.
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