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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 >New paleomagnetic results from the Upper Cretaceous red marls of the Pieniny Klippen Belt, Western Carpathians: Evidence for general CCW rotation and implications for the origin of the structural arc formation
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New paleomagnetic results from the Upper Cretaceous red marls of the Pieniny Klippen Belt, Western Carpathians: Evidence for general CCW rotation and implications for the origin of the structural arc formation

机译:西喀尔巴阡山脉Pieniny Klippen带上白垩统红色泥灰岩的新古磁结果:常规CCW旋转的证据及其对构造弧形成的影响

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The Pieniny Klippen Belt (PKB) is a narrow arcuate structure separating the Central and Outer Western Carpathians formed during several Cenozoic deformational stages. The primary aim of this study was to obtain paleomagnetic constraints for the mechanism of formation of the arc. We investigate Albian-Santonian red pelagic marls from 14 localities, distributed along a strike length of ca. 400km. AMS measurements reveal a pattern characteristic of weakly deformed sedimentary rocks and magnetic lineations do not correlate with the general strike of the PKB. Paleomagnetic analysis revealed well defined hematite-based ancient magnetization components at 13 localities, which are dated using fold- and inclination tests. A within-locality fold test is negative for two localities exhibiting large CCW rotations of similar magnitude situated at the two ends of the PKB. Remanences of pre-folding age were documented for 11 localities, with an overall mean paleomagnetic direction of D=311°, I=53°, and α95=11°. The indicated general CCW rotation most probably took place during the Miocene, together with Western Central and Outer Carpathians. Paleolatitudes for the PKB indicate a considerable separation from the southern margin of stable Europe leaving space for coordinated rotation. A paleomagnetic oroclinal test involving all localities with primary magnetizations was negative. When localities with monoclinal steep dips are omitted due to possible declination bias, the overall mean paleomagentic direction does not change significantly, but correlation is observed between the general trend of the PKB and the paleomagnetic declinations. Thus, we conclude that the present shape of the arc can be partly due to oroclinal bending. This must have happened before Oligocene since paleomagnetic declinations for neighboring Paleogene basins in the Central and Outer Western Carpathians reveal a uniform CCW rotation of ca. 50° magnitude, irrespective of the position of the localities in relation to the Carpathian arc.
机译:Pieniny Klippen带(PKB)是一个狭窄的弧形结构,将在多个新生代变形阶段形成的中喀尔巴阡山脉中西部和外部喀尔巴阡山脉分隔开来。这项研究的主要目的是获得古电磁约束,以形成电弧。我们调查了沿14条罢工长度分布的14个地区的阿尔比亚-桑托尼亚红中上层沼泽。 400公里AMS测量揭示了变形较弱的沉积岩的特征特征,磁力线与PKB的整体走向无关。古磁分析揭示了在13个地点的定义明确的基于赤铁矿的古代磁化分量,这些分量使用褶皱和倾角测试确定了日期。对于显示在PKB两端的相似大小的较大CCW旋转的两个区域,区域内折叠测试为阴性。记录了11个地区的预折叠年龄遗迹,总体平均古磁方向为D = 311°,I = 53°和α95= 11°。所示的常规CCW旋转很可能是在中新世时期以及中西部和喀尔巴阡山脉外围地区发生的。 PKB的古经表明与稳定的欧洲南部边缘有相当大的距离,为协调旋转留有空间。涉及所有局部具有初级磁化强度的古磁口试结果为阴性。当由于可能的偏斜而省略了具有单斜陡倾角的地区时,总体平均古生相方向没有显着变化,但是在PKB的总体趋势与古磁偏角之间观察到相关性。因此,我们得出结论,弧的当前形状可能部分是由于眼眶弯曲所致。这一定是在渐新世之前发生的,因为在中喀尔巴阡山脉中部和西部的邻近古近纪盆地的古磁偏角揭示了大约一致的逆时针旋转。 50°大小,与局部相对于喀尔巴阡弧的位置无关。

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