Translation, collision and vertical-axis rotation in the Organyà and Montsec minibasins (South-Central Pyrenees, Spain)

IF 2.8 2区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY
Basin Research Pub Date : 2024-01-31 DOI:10.1111/bre.12846
Jesús García-Senz, Berta López-Mir, Alejandro Robador, Jaume Dinarès-Turell, Antonio Pedrera
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Abstract

This paper presents a sequentially restored cross-section of the Organyà and Montsec minibasins based on geological mapping, new field observations and available borehole data. The main objective was to describe the geometry and evolution of both basins in terms of salt tectonics and minibasin mobility. To this end, a comprehensive palaeomagnetic database has been used to constrain vertical-axis rotations potentially related to minibasin translation and pivoting. The Organyà minibasin constitutes an asymmetric depocentre formed during the Upper Jurassic-Lower Cretaceous by translation above a southerly inclined salt layer. Salt evacuation and minibasin touchdown induced salt accumulation on the northern side of the basin that culminated in the development of the major Santa Fe unconformity during the late Albian—early Cenomanian. Indicative of salt quiescence is the following isopachous Cenomanian to lower Santonian sequence Salt tectonics resumed during the late Santonian—Palaeocene, with the Montsec minibasin downbuilding coinciding with the onset of Pyrenean convergence. Changes of the base-salt topography reflects regional-scale geodynamic processes. The acceleration of crustal thinning in the North Pyrenean zone during the late Albian-early Cenomanian favoured uplift in the Axial Zone, increasing slope and triggering salt mobilization in the Southern Pyrenees. Likewise, the onset of contraction renewed the downslope gliding of the Organyà and Montsec minbasins, and supports the idea that the early stages of basin inversion were governed by gravity tectonics. The kinematic reconstruction suggests that the more that 30° counterclockwise vertical axis rotation records pivoting during the suprasalt translation of the Organyà minibasin rather than solely the Iberian microplate rotation.

Abstract Image

Abstract Image

Organyà 和 Montsec 小盆地(西班牙比利牛斯山脉中南部)的平移、碰撞和垂直轴旋转
本文根据地质测绘、新的实地观察和现有的钻孔数据,介绍了按顺序复原的 Organyà 和 Montsec 小盆地横断面。主要目的是从盐构造和小盆地流动性的角度描述这两个盆地的几何形状和演变过程。为此,使用了一个全面的古地磁数据库,以确定可能与小盆地平移和枢转有关的垂直轴旋转。Organyà小盆地是上侏罗世-下白垩世期间在南向倾斜盐层上方平移形成的不对称沉积中心。排盐和小盆地下移导致盆地北侧盐分积累,最终在晚白垩世-早新生代形成了主要的圣达菲不整合地貌。盐构造作用在晚三叠世-古新世期间恢复,蒙塞克小盆地的下沉与比利牛斯山脉开始辐合相吻合。盐基地形的变化反映了区域尺度的地球动力学过程。阿尔卑斯晚期至新生代早期,北比利牛斯地区地壳加速变薄,有利于轴心地带的隆起,增加了坡度,引发了南比利牛斯地区的盐分移动。同样,收缩的开始更新了 Organyà 和 Montsec 小盆地的下坡滑动,支持了盆地反转的早期阶段受重力构造影响的观点。运动学重建表明,超过 30° 的逆时针垂直轴旋转记录了 Organyà 小盆地在盐上平移过程中的枢转,而不仅仅是伊比利亚微板块的旋转。
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来源期刊
Basin Research
Basin Research 地学-地球科学综合
CiteScore
7.00
自引率
9.40%
发文量
88
审稿时长
>12 weeks
期刊介绍: Basin Research is an international journal which aims to publish original, high impact research papers on sedimentary basin systems. We view integrated, interdisciplinary research as being essential for the advancement of the subject area; therefore, we do not seek manuscripts focused purely on sedimentology, structural geology, or geophysics that have a natural home in specialist journals. Rather, we seek manuscripts that treat sedimentary basins as multi-component systems that require a multi-faceted approach to advance our understanding of their development. During deposition and subsidence we are concerned with large-scale geodynamic processes, heat flow, fluid flow, strain distribution, seismic and sequence stratigraphy, modelling, burial and inversion histories. In addition, we view the development of the source area, in terms of drainage networks, climate, erosion, denudation and sediment routing systems as vital to sedimentary basin systems. The underpinning requirement is that a contribution should be of interest to earth scientists of more than one discipline.
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