瓦里坎-阿尔卑斯山周期过渡期间的增压构造:支持多重断裂模型,来自欧洲西部南阿尔卑斯山的证据

IF 3.2 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
Emanuele Scaramuzzo, Franz A. Livio, Maria Giuditta Fellin, Colin Maden
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引用次数: 0

摘要

摘要我们深入研究了古生代瓦里斯坎周期与中新生代阿尔卑斯超大陆周期之间的过渡。我们的研究重点是欧洲西部南阿尔卑斯山(意大利北部瓦雷泽地区),我们记录了这一过渡时期发生的构造事件。迄今为止,人们对这一转变提出了两种主要方案:i)单一、持久的二叠纪-三叠纪断裂事件,最终导致阿尔卑斯特提斯山脉的开辟;或 ii)阿尔卑斯周期开始之前发生的多个不同的断裂事件。通过构造地层学和热年代学方法,我们认识到第一个二叠纪早期的断裂阶段与岩浆活动有关,随后在二叠纪早中期出现了转位构造和区域规模的侵蚀,标志着第一个地壳断裂周期的结束。在中三叠世,第二个事件开始发生,我们认为这标志着阿尔卑斯特提斯开裂的开始。这一事件可能代表了拉伸阶段,它早于有据可查的上三叠世地壳减薄阶段。根据我们的研究结果,我们认为中三叠世的伸展阶段代表了阿尔卑斯特提斯断裂的第一阶段,从而否定了二叠三叠世长期持续伸展阶段的假说。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transpressional tectonics during the Variscan-Alpine cycle transition: supporting a multi-rifting model, evidence from the European western Southern Alps
Abstract. We delve into the transition between the Paleozoic Variscan cycle and the Meso-Cenozoic Alpine supercontinent cycle, both of which have played a pivotal role in shaping the central European-Mediterranean plate’s architecture. Our focus is on the European western Southern Alps (Varese Area, N Italy), where we documented the tectonic events occurred during this transition. Two main scenarios have been proposed so far for this transition: i) a single, long-lasting, Permo-Triassic rifting event, culminating in the opening of the Alpine Tethys, or ii) multiple, distinct rifting events, preceding the onset of the Alpine cycle. By means of a tectono-stratigraphic and thermochronological approach, we recognized a first early Permian rifting stage associated with magmatic activity, followed during the early-middle Permian by transpressive tectonics and regional-scale erosion that signal the end of the first cycle of crustal rifting. During the Middle Triassic, a second event initiated, which, we propose, marks the onset of the Alpine Tethys opening. This event could represent the stretching phase, which predates the well documented Upper Triassic crustal-thinning phase. Based on our findings, we propose that the Middle Triassic stretching phase represents the first stage of the Alpine Tethys rifting, thereby rejecting the hypothesis of a continuous Permo-Triassic long-lasting phase of extension.
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来源期刊
Solid Earth
Solid Earth GEOCHEMISTRY & GEOPHYSICS-
CiteScore
6.90
自引率
8.80%
发文量
78
审稿时长
4.5 months
期刊介绍: Solid Earth (SE) is a not-for-profit journal that publishes multidisciplinary research on the composition, structure, dynamics of the Earth from the surface to the deep interior at all spatial and temporal scales. The journal invites contributions encompassing observational, experimental, and theoretical investigations in the form of short communications, research articles, method articles, review articles, and discussion and commentaries on all aspects of the solid Earth (for details see manuscript types). Being interdisciplinary in scope, SE covers the following disciplines: geochemistry, mineralogy, petrology, volcanology; geodesy and gravity; geodynamics: numerical and analogue modeling of geoprocesses; geoelectrics and electromagnetics; geomagnetism; geomorphology, morphotectonics, and paleoseismology; rock physics; seismics and seismology; critical zone science (Earth''s permeable near-surface layer); stratigraphy, sedimentology, and palaeontology; rock deformation, structural geology, and tectonics.
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