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Calculation of temperature distribution and rheological properties of the lithosphere along transect IV in the Western Carpathian-Pannonian Basin region

机译:西喀尔巴阡山脉盆地盆地横切IV岩石圈温度分布及流变性能计算

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2D integrated modelling algorithm was used to calculate the temperature distribution in the lithosphere along the transect IV located in the Western Carpathian-Pannonian Basin area. Based on the determined temperature field and given rheological parameters of the rocks, it was possible to calculate the strength distribution for both compressional and extensional regimes, construct the strength envelopes for chosen columns of the main tectonic units of the model, and thus construct a simple rheological model of the lithosphere along transect IV. The obtained results indicate decrease of the lithospheric strength from the European platform and the Western Carpathians towards the Pannonian Basin. The largest strength (valid for all tectonic units) can be observed within the upper crust with its maxima on the boundary between upper and lower crust, decreasing towards lower crust and disappearing in the lithospheric mantle, suggesting mostly rigid deformation occurring in the upper crust. A local increase in the values of strength can be observed in the eastern segment of the Western Carpathians where crustal thickening accompanies the lithospheric thickening (formation of the lithospheric root), unlike the previous models along transects I and II, that pass through the western segment of the Western Carpathians and their lithosphere-asthenosphere boundary is almost flat and therefore no accompanying crustal thickening is observed and the decrease in strength is slow and steady.
机译:2D集成建模算法用于沿着位于喀尔巴阡山脉盆地盆地西部横梁IV的岩石圈温度分布。基于所确定的温度场和岩石的给定流变参数,可以计算压缩和延伸制度的强度分布,构建模型主构造单元的所选柱的强度包络,因此构建简单横切IV岩石圈的流变模型。所获得的结果表明,从欧洲平台和西部喀尔巴阡山脉朝向Pannonian盆地的岩石主体的降低。在上层地壳内,最大的强度(所有构造单元的有效单位)可以在上层地壳上观察到上层和下地壳之间的边界,朝着底部地壳中的底部地壳下降并消失,提出了在上外壳中的刚性变形。在西部喀尔巴阡山脉的东部地段中,可以观察到强度值的局部增加,其中地壳增厚伴随着岩石术加厚(岩石根部的形成),与以前的横切I和II的模型不同,通过西部段在西部喀尔巴阡山脉及其岩石圈的岩石圈边界几乎是平坦的,因此没有观察到伴随的地壳增厚,并且力量降低缓慢稳定。

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