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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 >Mapping the indentation between the Iberian and Eurasian plates beneath the Western Pyrenees/Eastern Cantabrian Mountains from receiver function analysis
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Mapping the indentation between the Iberian and Eurasian plates beneath the Western Pyrenees/Eastern Cantabrian Mountains from receiver function analysis

机译:从接收器函数分析中绘制比利牛斯山脉/东坎塔布连山脉下方的伊比利亚板块和欧亚板块之间的压痕

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摘要

In the last decades, active seismic profiling in the northern part of the Iberian Peninsula has evidenced that the Alpine collision between the Iberian and Eurasian plates resulted in a complex crustal structure, with the Iberian crust underthrusting the Eurasian crust and reaching depths of at least 45-50.km beneath the Pyrenean chain and the Cantabrian Mountains.In the transition between these two zones the situation is particularly complex, as evidenced in previous wide-angle and passive seismic studies.This contribution focuses in getting new clues on the crustal structure of this transitional zone through receiver function(RF) analysis of teleseismic data recorded at permanent and temporary stations located in both the Spanish and French sides of the Western Pyrenees.Different techniques(H-κ stacking, pseudo-migration, synthetic 2D modeling) have been considered in the analysis.Passive seismic data from previous temporary deployments in the zone have been reworked and added to the discussion.A first order result is that passive seismic data are broadly consistent with the indentation of the Iberian and Eurasian crusts inferred from active seismic profiling, thus providing a completely independent confirmation of this feature.For the first time, an Iberian Moho underlying the Eurasian crust is documented from RF beneath the stations located at the Northern side of the Pyrenean range.Moreover, clear indications of dipping interfaces are observed at some stations.The new RF results suggest that in the crustal indentation beneath the Basque Massifs area, the Eurasian crust extends farther south with respect to the image inferred from active seismic data.This new geometry implies that the Pamplona transfer zone has played a major role in the regional geodynamic history.
机译:在过去的几十年中,伊比利亚半岛北部的活跃地震波资料表明,伊比利亚和欧亚板块之间的高山碰撞导致了复杂的地壳结构,伊比利亚地壳反冲了欧亚地壳并达到了至少45的深度。比利牛斯山脉和坎塔布连山脉以下-50公里。在这两个区域之间的过渡中,情况特别复杂,这在先前的广角和被动地震研究中都得到了证明。通过在西比利牛斯山脉的西班牙和法国两侧的永久性和临时性站点记录的远震数据的接收器功能(RF)分析来确定该过渡带。已采用了不同的技术(H-κ叠加,伪偏移,合成2D建模)分析中考虑了该区域先前临时部署的被动地震数据,并将其添加到讨论的结果是,一阶结果是被动地震数据与主动地震剖面推断出的伊比利亚和欧亚地壳的缩进大致一致,从而提供了对该特征的完全独立的证实。从比利牛斯山脉北侧台站下方的RF记录了地壳,此外,在某些台站上还观察到了明显的浸入界面迹象,新的RF结果表明,在巴斯克断层块地区下方的地壳凹陷中,欧亚地壳相对于从活跃地震数据推断出的图像而言,它向南延伸。这种新的几何形状意味着潘普洛纳转移带在区域地球动力学历史中发挥了重要作用。

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