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Crustal structure of an intraplate thrust belt: The Iberian Chain revealed by wide-angle seismic, magnetotelluric soundings and gravity data

机译:板内冲断带的地壳结构:伊比利亚链通过广角地震,大地电磁测深和重力数据揭示

摘要

The Iberian Chain is a Cenozoic intraplate thrust belt located within the Iberian plate. Unlike other belts in the Iberia Peninsula, the scarcity of geophysical studies in this area results in a number of unknowns about its crustal structure. The Iberian Chain crust was investigated by means of a NE-SW refraction/wide-angle reflection seismic transect and two magnetotelluric profiles across the chain, oriented along the same direction. The seismic profile was designed to sample the crust by means of three shots designed to obtain a reversed profile. The resulting velocity-depth model shows a moderate thickening of the crust toward the central part of the profile, where crustal thickness reaches values above 40. km, thinning toward de SW Tajo and NE Ebro foreland basins. The crustal thickening is concentrated in the upper crust. The seismic results are in overall agreement with regional trends of Bouguer gravity anomaly and the main features of the seismic model were reproduced by gravity modeling. The magnetotelluric data consist of 39 sites grouped into two profiles, with periods ranging from 0.01 s to 1000 s. Dimensionality analyses show significant 3D effects in the resistivity structure and therefore we carried out a joint 3D inversion of the full impedance tensor and magnetic transfer functions. The Mesozoic and Cenozoic basins along the Chain are well characterized by shallow high conductive zones and low velocities. Elongated conductors reaching mid-crustal depths evidence the presence of major faults dominating the crustal structure. The results from the interpretation of these complementary geophysical data sets provided the first images of the crustal structure of the Iberian Chain. They are consistent with a Cenozoic shortening responsible of the upper crust thickening as well as of the uplift of the Iberian Chain and the generation of its present day topography.
机译:伊比利亚链是位于伊比利亚板块内的新生代板内冲断带。与伊比利亚半岛的其他带不同,该地区缺乏地球物理研究,导致其地壳结构存在许多未知数。利用NE-SW折射/广角反射地震剖面和沿链条沿相同方向定向的两个大地电磁剖面,研究了伊比利亚链地壳。地震剖面图设计为通过三个炮弹来采样地壳,这些炮丸旨在获得反向剖面图。生成的速度-深度模型显示出地壳向剖面中部逐渐增厚,地壳厚度达到40. km以上,向de Ta Tajo和NE Ebro前陆盆地变薄。地壳增厚集中在上地壳。地震结果与布格重力异常的区域趋势总体吻合,并且通过重力建模再现了地震模型的主要特征。大地电磁数据由39个站点组成,分为两个剖面,周期范围为0.01 s至1000 s。尺寸分析显示了电阻率结构中的重要3D效应,因此我们对完整的阻抗张量和磁传递函数进行了联合3D反演。沿链条的中生代和新生代盆地以浅层高导电带和低速为特征。延伸到地壳中部深度的导体证明存在主要断层,占地壳结构的主导。这些互补地球物理数据集的解释结果提供了伊比利亚链地壳结构的第一张图像。它们与导致上地壳增厚,伊比利亚链上升和现代地形形成的新生代缩短相吻合。

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