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Regional structure of the southern segment of Central Iberian Zone (Spanish Variscan Belt) interpreted from potential field images and 2.5 D modelling of Alcudia gravity transect

机译:伊比利亚中部地区南部区域(西班牙瓦里斯卡纳带)的区域结构由潜在的野外图像和阿库迪亚重力断面的2.5 D建模解释

摘要

This study presents a structural interpretation of potential field data at the southern segment of the Spanish Central Iberian Zone, where little is known about its geometry and physical properties in depth. We used ground gravity and aeromagnetic data from the Spanish Geological Survey (IGME) databases, together with a gravity survey recently acquired along the Alcudia deep seismic reflection profile, and also petrophysical data from rock samples, in part specifically acquired for this work. The aim is to characterize with potential fields the depth structure and physical properties of a complex area, focusing on features of the upper crust where the potential fields can provide a useful insight, as these features appear to be transparent in the images of seismic surveys carried up to date. After building a 2.5 D model of the magnetic susceptibility and density distribution for the whole crust with the constraints of the Alcudia seismic transect, relationships between lower and upper crustal structures can be better established, and surface geophysical maps allow estimating the lateral extensions of the main structures characterized by the potential field modelling. Interpreted gravity and magnetic Alcudia features consist of: 1) long-wavelength anomalies due to changes in crustal thickness and structure, identified along the Alcudia seismic reflection profile; some crustal boundaries and the seismic Moho have been slightly modified in the potential field model to fit the observed data; and, 2) short wavelength anomalies related to upper crustal features as large NW-SE faults and folds, and plutonic alignments. Northern and southern Alcudia segments show relevant lower-middle crust shortening structures underneath extensive Variscan plutons (Mora, Pedroches) and folded basins (Pedroches). Potential field imaging and modelling of these structures have provided a better understanding of the subsurface geology, particularly in non-reflective areas, unravelling the deep structure of the southern Central Iberian Zone. © 2013 Elsevier B.V.
机译:这项研究对西班牙伊比利亚中部地区南部的潜在野外数据进行了结构解释,对该地区的几何形状和物理性质了解甚少。我们使用了来自西班牙地质调查局(IGME)数据库的地面重力和航磁数据,以及最近沿Alcudia深地震反射剖面采集的重力调查,还使用了岩石样品的岩石物理数据(部分是专门为此工作而采集的)。目的是用势场表征复杂区域的深度结构和物理特性,着眼于上地壳的特征,在这些特征上势场可以提供有用的见解,因为这些特征在所进行的地震勘测图像中似乎是透明的最新。在Alcudia地震剖面的约束下建立整个地壳的磁化率和密度分布的2.5 D模型后,可以更好地建立上下地壳结构之间的关系,并且表面地球物理图可以估算主构造的横向扩展。以势场建模为特征的结构。解释的阿库迪亚重力和磁性特征包括:1)沿阿库迪亚地震反射剖面确定的由于地壳厚度和结构变化引起的长波异常;在势场模型中略微修改了一些地壳边界和地震莫霍面以适合观测数据; 2)与上地壳有关的短波长异常,如大型NW-SE断层和褶皱,以及古生物排列。阿库迪亚北部和南部部分在广泛的Variscan岩体(Mora,Pedroches)和折叠盆地(Pedroches)之下显示了相关的中下地壳缩短结构。这些结构的潜在场成像和建模已经更好地了解了地下地质,尤其是在非反射区域,揭示了伊比利亚南部中部地区的深层结构。 ©2013 Elsevier B.V.

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