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Calculation of temperature distribution and rheological properties of the lithosphere along transect I in the Western Carpathians

机译:西喀尔巴阡沿样带I的岩石圈温度分布和流变特性的计算

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Using the 2D integrated modelling method, we calculated the temperature model of the lithosphere along transect I passing through theWestern Carpathians. Based on the extrapolation of failure criteria, lithology and calculated temperature distribution, we derived the rheology model of the lithosphere in the area. Our results indicate clearly that the strength decreases from the Bohemian Massif via the Western Carpathians to the Pannonian Basin. The largest strength can be observed within the upper crust on the boundary between the upper and lower crust. This phenomenon is typical for all studied tectonic units: the Bohemian Massif, the Western Carpathians and the Pannonian Basin. These results suggest mostly rigid deformation in the upper crust of the units. By contrast, the lower crust in the Bohemian Massif and the Western Carpathians reflects significantly lower strength, while in the Pannonian Basin the strength is the smallest. In all tectonic units the strength within the uppermost mantle (lower lithosphere) disappears. It can be suggested that the ductile deformation dominates in this part of the lithosphere.
机译:使用二维集成建模方法,我们计算了穿过西喀尔巴阡山脉的样带I的岩石圈温度模型。基于破坏准则,岩性和计算出的温度分布的外推,我们得出了该地区岩石圈的流变模型。我们的结果清楚地表明,强度从波西米亚地块经过西喀尔巴阡山脉到潘侬尼盆地而降低。在上,下地壳之间的边界上的上地壳内可以观察到最大的强度。这种现象在所有研究的构造单元中都是典型的:波西米亚地块,西喀尔巴阡山脉和潘诺尼亚盆地。这些结果表明该单元的上地壳大部分为刚性变形。相比之下,波西米亚地块和西喀尔巴阡山脉的下部地壳反映出明显较低的强度,而在潘诺尼亚盆地,强度最小。在所有构造单元中,最上层地幔(下部岩石圈)内的强度消失。可以认为,在岩石圈的这一部分,韧性变形起主要作用。

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