外围新生代造山运动与内北冈瓦纳腹地之间的远场相互作用:寒武-奥陶纪硅质岩层和前希尔南纪不整合地层(撒哈拉沙漠,利比亚中部)

IF 10.8 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Earth-Science Reviews Pub Date : 2024-10-05 DOI:10.1016/j.earscirev.2024.104952
Darko Spahić , Fabrizio Cocco , Pavle Tančić
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引用次数: 0

摘要

近冈瓦纳欧洲南部大部分地区所界定的冈瓦纳北部边缘的内奥陶纪地球动力学对不断下沉的冈瓦纳内部产生了深远的影响。外围的新生代造山运动影响了单斜碎屑岩寒武纪-下奥陶世巨序不整合地覆北非基底的持续沉降和沉积。文献综述和实地测绘相结合,为利比亚中部截断的寒武-奥陶纪层序与南欧和阿尔卑斯-喀尔巴阡山-巴尔干基底中记录的近冈瓦纳奥陶纪变形(不整合标记)之间提供了一阶约束。数据综合进一步证实了冈瓦纳山东北侧(南欧/阿尔卑斯-喀尔巴阡山-巴尔干半岛)脱离的奥陶纪外来地层与其下沉的奥陶纪内克拉通腹地之间的遗传联系。通过将复杂的地层学、锆英石和铁岩数据集作为不整合标记,提供了欧洲中南部和北非奥陶纪印记之间的联系。地层学中的一些贡瓦纳板块内截断与经常性的奥陶纪地球动力学干扰相吻合,特别是嵌入贡瓦纳板块东北部组合的不整合。这些板块内截断最相关的是所谓的 "奥陶纪内 "角状不整合。阿伦尼根内 "角状不整合与冈瓦纳山脉东部的新生代或撒丁岛奥陶纪内变形事件相吻合。阿伦尼基安内 "角状不整合将北非腹地的单调超成熟碎屑岩寒武-下奥陶统地层与达里维地层(或哈索纳地层与哈瓦兹地层)分开。这种角状不整合的地层位置与外大陆架活动边缘相关的地球动力压缩干扰(碰撞或 "对接",不涉及地壳增厚)相吻合。大体类似的奥陶纪内地球动力关系已在被称为萨迪克和萨拉伯斯奥陶纪中期构造阶段的分离的异国情调的南欧瓦里斯坎地层中得到确认。横断中奥陶世哈瓦兹地层中的锆英石碎屑群表明,其产地变化与连接冈瓦纳山脉东北侧和腹地的巨大浅海陆架相一致。达里维利期的不整合后序列或地层最下部的哈瓦兹 K-膨润土以及最近绘制的夹在梅拉兹舒克拉内地层(上卡蒂期-希尔南安期)中的玄武岩可能与短暂的弧后或与裂谷有关的(地壳内)火山活动有关。奥陶纪的弧后延伸或断裂事件晚于外侧的新生代造山运动中的增生构造。这种岩浆活动可能与晚奥陶世-志留纪断裂和近戈德瓦南地层的漂移有关。
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The far-field interplay between peripheral Cenerian Orogeny and inner north Gondwanan hinterland: Cambro-Ordovician siliciclastic veneer and pre-Hirnantian unconformities (Sahara, central Libya)
Intra-Ordovician geodynamics along the northern Gondwana margin, defined in most parts of exotic southern peri-Gondwanan Europe, had a far-field effect on the subsiding Gondwanan interior. The outboard peripheral Cenerian Orogeny influenced the ongoing subsidence and deposition of monotonous clastic Cambrian – Lower Ordovician mega-sequence unconformably overlying North African basements. A combination of literature review and field mapping provides first-order constraints between the truncated Cambro-Ordovician successions of central Libya and peri-Gondwanan intra-Ordovician deformation recorded in south-European and Alpine-Carpathian-Balkan basements (unconformity markers). The data synthesis further permits a genetic connection between the detached exotic Ordovician northeastern Gondwanan flank (south Europe/Alps-Carpathian-Balkans) and its subsiding Ordovician intra-cratonic hinterland. By coupling the complex stratigraphic, detrital zircon, and ironstone datasets as unconformity markers, link between south-central European and North African Ordovician imprints is provided.
Several Gondwanan intraplate truncations in stratigraphy coincide with recurrent Ordovician geodynamical interferences, particularly unconformities embedded into the northeastern Gondwanan assemblage. The most relevant of these intraplate truncations is the so-called "intra-Arenigian" angular unconformity. The “intra-Arenigian” angular unconformity coincides with eastern Gondwanan Cenerian or Sardic intra-Ordovician deformational episodes. The “intra-Arenigian” angular unconformity separates monotoneous super-mature clastic Cambrian-Lower Ordovician from Darriwilian strata of North African hinterland, or the Hasawnah from the Hawaz Formations. The stratigraphic position of this angular unconformity fits with the outer-shelf active margin-related geodynamic compressional interferences (collision or “docking”, no crustal thickening involved). Broadly analogous intra-Ordovician geodynamic relationship was already recognized in detached exotic south European Variscan terranes referred to as the Sardic and Sarrabese mid-Ordovician tectonic phases. The detrital zircon populations within the transgressive Middle Ordovician Hawaz Formation suggest a provenance change consistent with a vast shallow shelf linking the northeastern Gondwanan flank and hinterland. The post-unconformity sequence or stratigraphically lowermost Hawaz K-bentonites of the Darriwilian age and the recently mapped basalts interbedded within the Melaz Shuqrāne Formation (Upper Katian-Hirnantian) could be in correlation with a short-lived back-arc or rift-related (intracratonic) volcanism. The Ordovician back-arc extension or rifting event postdates the accretionary tectonics in the outboard flanking Cenerian Orogeny. Such magmatism could be in relation to the Late Ordovician – Silurian rift and drift-off of the peri-Godwanan terrane assembly.
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来源期刊
Earth-Science Reviews
Earth-Science Reviews 地学-地球科学综合
CiteScore
21.70
自引率
5.80%
发文量
294
审稿时长
15.1 weeks
期刊介绍: Covering a much wider field than the usual specialist journals, Earth Science Reviews publishes review articles dealing with all aspects of Earth Sciences, and is an important vehicle for allowing readers to see their particular interest related to the Earth Sciences as a whole.
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