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Variscan ophiolite belts in the Ossa-Morena Zone (Southwest Iberia): Geological characterization and geodynamic significance

机译:Ossa-Morena地区(西南伊比利亚)的瓦里斯坎蛇绿岩带:地质特征和地球动力学意义

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摘要

AbstractAt SW Iberia, the boundary between Iberian and South-Portuguese Terranes is traced by a suture recording the closure of Rheic and related oceans through N-NE subduction. The western segment of the suture comprises imbrications of Iberian Terrane Relative Autochthon (Neoproterozoic - Lower Palaeozoic) and Allochthonous Complexes. The Iberian Terrane Relative Autochthon is topped by Lower-Middle Devonian metasediments and an unconformable cover of Lower Carboniferous (calc-alkaline) Volcano-sedimentary Complexes, both preserving evidence of very-low grade metamorphism. The Allochthonous Complexes include disrupted slivers of eclogite (ca. 370 Ma), klippen and slices of an internal ophiolite sequence (IOMZOS), a basal tectonic mélange (Moura Phyllonitic Complex) and an external ophiolite (Beja-Acebuches Complex, BAOC). A large layered gabbroic sequence (LGS), part of the Beja Igneous Complex, intruded (ca. 350-340 Ma) the SW suture domains. The IOMZOS represent obducted remnants of the Rheic Ocean, for which the available SHRIMP U-Pb data indicate and age of 4795.1 Ma; this ocean, separating Iberia from a promontory of Gondwana and Avalonia (now represented by the South-Portuguese Terrane), opened near the Cambrian-Ordovician transition through a “rift-jump” from an intra-cratonic setting (within the Iberian Terrane) to an intra-oceanic rifting. The BAOC displays geochemical features compatible with derivation from a [Lower-Middle Devonian (?); TDM (Sm-Nd)  380-440 Ma] short-lived back-arc basin. The Variscan ophiolite belts preserved along the SW Variscides were emplaced by antithetic obduction in two stages, both with shearing sense to N-NE. The first stage involved IOMZOS cold obduction, exhumated HP-rocks (ca. 370 Ma) and created a foreland bulge towards the Iberian Terrane SW flank; this mechanism controlled the development of the volcanic related carbonate shelves and the contemporaneous (NE) Terena flysch trough. The second stage corresponds to BAOC hot obduction, carrying the IOMZOS klippen in piggy-back style and affecting the southern margin of LGS at ca. 350-340 Ma.
机译:摘要在伊比利亚西南部,一条缝线记录了伊比利亚和南葡萄牙的地形之间的边界,该缝线记录了通过N-NE俯冲作用封闭的Rheic和相关海洋。缝合线的西段包括伊比利亚地层相对自交系(新生代-下古生界)和异源复合体的嵌岩。伊比利亚地层相对Autochthon以低-中泥盆纪元沉积物和下石炭统(钙碱性)火山沉积复合物的不整合覆盖为顶,两者都保留了极低品位变质的证据。异源复合物包括破裂的榴辉岩条(约370 Ma),klippen和切片的内部蛇绿岩序列(IOMZOS),基底构造混杂岩(Moura Phyllonitic Complex)和外部蛇绿岩(Beja-Acebuches Complex,BAOC)。 Beja Igneous Complex的一部分是一个大的层状辉长岩序列(LGS),侵入(约350-340 Ma)SW缝合域。 IOMZOS代表了Rheic Ocean的遗留物,可用的SHRIMP U-Pb数据表明其年龄为4795.1Ma。这条海洋将伊比利亚与冈瓦纳和阿瓦隆海角(现在由南葡萄牙人的地形所代表的海角)分隔开来,在寒武纪-奥陶纪过渡期附近,通过从克拉通内部(伊比利亚人的地形内)到“克拉通”的过渡而开放海洋内部裂谷。 BAOC的地球化学特征与[下中泥盆纪(?); TDM(Sm-Nd)380-440 Ma]短寿命后弧盆地。沿SW Variscides保留的Variscan蛇绿岩带分两个阶段通过对位诱变而置入,对N-NE均具有剪切意义。第一阶段涉及IOMZOS的冷引诱,消灭高压岩石(约370 Ma),并向伊比利亚Terrane SW侧翼形成前陆凸起。这种机制控制了与火山有关的碳酸盐岩层架和同时期(NE)Terena flysch槽的发育。第二阶段对应于BAOC热引诱,携带背负式IOMZOS klippen并影响大约LGS的南缘。 350-340毫安。

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