首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Hints on the deformation penetration induced by subductions and collision processes: Seismic anisotropy beneath the Adria region (Central Mediterranean)
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Hints on the deformation penetration induced by subductions and collision processes: Seismic anisotropy beneath the Adria region (Central Mediterranean)

机译:由俯冲和碰撞过程引起的变形渗透的提示:阿德里亚地区(地中海中部)下方的地震各向异性

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Adria is a small region surrounded by three mountain belts: the Alps, the Apennines, and the Dinarides, built up by long evolution of subduction and collisional systems. We present 253 shear wave splitting measurements obtained by studying more than 100 teleseismic events for 12 stations. SKS splitting measurements show 3-D complexity and quite strong upper mantle deformation. We carefully analyzed results in terms of back azimuthal coverage and interpret measurements as related to Adria rotation and to subductions evolution. In the northern part of Adria, the anisotropy pattern follows the arcuate shape of the Alps; the same pattern, parallel to the mountains, occurs along the Apennines, but fast directions show a sudden change in the Adria foreland. This lateral variation has been analyzed to isolate a distinct Adria mantle anisotropic pattern, which is identified as NE-SW fast direction along the western microplate boundary and as N-S fast direction at Trieste. This pattern might be induced by drag effect of the counterclockwise rotation of Adria lithosphere that behaves as an independent microplate as identified by GPS data. Our measurements suggest that the geodynamic process that generated the Alps is more efficient deforming a larger volume of mantle than its Apennine counterpart. Moreover, the mantle circulation we hypothesize looking at the regional-scale patterns of anisotropy requires the existence of an escape route beneath the Alps-Apennines transition, through which the mantle flows and feed circulation in the Tyrrhenian mantle system as suggested by previous geodynamic models and as seen by some tomographic studies.
机译:阿德里亚(Adria)是一个由三个山脉环绕的小区域:阿尔卑斯山,亚平宁山脉和第纳里德山脉,是由俯冲和碰撞系统的长期演变而建立的。我们目前通过研究12个台站的100多个地震事件获得了253个剪切波分裂测量结果。 SKS分裂测量结果显示了3-D复杂性和相当强烈的上地幔变形。我们根据后向方位角覆盖范围仔细分析了结果,并将测量结果解释为与阿德里亚旋转和俯冲演化有关。在阿德里亚北部,各向异性模式遵循阿尔卑斯山的弧形形状。沿着亚平宁山脉,出现了与山脉平行的相同模式,但是快速方向显示了阿德里亚前陆的突然变化。已对该横向变化进行了分析,以分离出独特的Adria地幔各向异性模式,该模式被确定为沿微孔板西部边界的NE-SW快速方向和在的里雅斯特的N-S快速方向。这种模式可能是由Adria岩石圈逆时针旋转的拖曳作用引起的,该作用表现为GPS数据所识别的独立微孔板。我们的测量表明,生成阿尔卑斯山的地球动力学过程比对应的亚平宁更有效地变形了更大的地幔。此外,我们假设的地幔环流是根据各向异性的区域尺度模式进行的,因此需要在阿尔卑斯山-亚平宁山脉过渡带下存在一条逃逸路线,通过该逃逸路线,第勒尼安地幔系统中的地幔流和进水环流如先前的地球动力学模型和如一些层析成像研究所见。

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