再论前陆盆地的 "三位一体下填模型":现实还是神话?

Xiu-Mian Hu , Eduardo Garzanti , Juan Li , Marcelle BouDagher-Fadel , Giovanni Coletti , An-Lin Ma , Wen-Dong Liang , Wei-Wei Xue
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引用次数: 0

摘要

前陆盆地地层学的""模型是根据以下观察结果提出的:阿尔卑斯山西部和中部西部和北部前沿的最初沉积阶段由浅水碳酸盐岩(Calcaires à Nummulites)代表,上覆半海相泥灰岩(Marnes Bleues),顶部为硅质浊积岩(Grès d'Annot)。随后,这一模式被广泛接受并应用于世界各地的前陆盆地。在此,我们对西阿尔卑斯山始新世-更新世沉积演替进行了重新调查,以验证其正确性。该地区的主要地质特征包括i) 在所研究的地段存在白垩纪-始新世不整合,时间跨度超过 25 Myr;ii) 整个西阿尔卑斯山的 Calcaires à Nummulites、Marnes Bleues 和 Grès d'Annot 地层的年龄几乎同步;钙钛矿记录了从内斜坡到外斜坡的长期加深上升趋势,其次是深海白云岩和格雷斯德安诺浊积岩;④格雷斯德安诺地层的产地来自南部的毛雷-埃斯特雷尔块和/或科西嘉-撒丁岛块,而不是东部的阿尔卑斯造山带。通过综合实地观察、沉积学、生物地层学和产地分析,我们发现始新世 "填充不足的前陆 "模式过于简单,不足以解释阿尔卑斯山西部地区的盆地演化。根据本文提出的替代方案,安诺盆地和巴雷姆盆地形成于晚始新世(40-35 Ma),当时整个欧洲西部亚平宁俯冲上板块的构造应力场发生了重大变化,盆地处于伸展/拉伸环境中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The “underfilled trinity model” of foreland basins revisited: reality or myth?
The “underfilled trinity” model of foreland-basin stratigraphy was proposed based on the observation that the initial sedimentary stages along the western and northern front of the western and central Alps were represented by shallow-water carbonates (Calcaires à Nummulites) overlain by hemipelagic marls (Marnes Bleues) and capped by siliciclastic turbidites (Grès d’Annot). Subsequently, this model has been widely accepted and applied in foreland basins worldwide. We here re-investigated the Eocene-Oligocene sedimentary succession of the Western Alps to check its validity. Major geological features of this region include: i) the existence of a Cretaceous-Eocene unconformity spanning more than 25 Myr in the studied sections; ii) a virtually synchronous age of the Calcaires à Nummulites, Marnes Bleues, and Grès d’Annot formations across the Western Alps; iii) a long-term deepening-upward trend, from inner to outer ramp, documented by the Calcaires à Nummulites, followed by the pelagic Marnes Bleues and by the Grès d’Annot turbidites; iv) the provenance of the Grès d’Annot Formation from the Maures-Estérel Massif and/or Corsica-Sardinia block in the south, rather than from the Alpine orogen in the east. By integrating field observations, sedimentological, biostratigraphic, and provenance analyses, we found the Eocene “underfilled foreland” model too simplistic and inadequate to explain the basin evolution in the western Alpine region. Based on the alternative scenario proposed herein, the Annot and Barrême basins formed in the late Eocene (40-35 Ma) in an extensional/transtensional setting during a period of major change in tectonic stress fields across western Europe on the upper plate of the Apennine subduction.
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