首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >The Alpine overprints of the magnetic fabrics in the basement and cover rocks of the Veporic Unit (Western Carpathians, Slovakia)
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The Alpine overprints of the magnetic fabrics in the basement and cover rocks of the Veporic Unit (Western Carpathians, Slovakia)

机译:蒸气单元(斯洛伐克西部喀尔巴阡山脉)地下室和覆盖岩石中的磁性织物的高山叠印

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In the Veporic Unit building up the central areas of the Western Carpathians, the magnetic fabrics are more or less coplanar and coaxial in metamorphic (Early Palaeozoic in age), granitic (Early to Late Palaeozoic in age) and sedimentary cover rocks (Permian/Triassic in age). The magnetic fabrics in metamorphic and granitoid basement rocks, as well as in sedimentary (-volcanic) cover rocks, appear to reflect a very wide P-T conditions of Cretaceous (originally Variscan) basement reactivation connected with a prograde metamorphism of the sedimentary cover rocks in lower greenschist (in the North-Veporic area) or the upper greenschist to lower amphibolite facies (in the South-Veporic area) during collisional burial in a collisional wedge. In addition, there are deformation zones where the magnetic fabrics formed due to a ductile deformation associated with extensional exhumation along (sinistral) lateral strike slip and normal faults. The late open folds did not principally change the former magnetic fabrics. The magnetic fabrics in sedimentary cover rocks of the North-Veporic area are either related to still recognizable bedding planes (in competent layers) with parallel superimposed metamorphic schistosity, or they are conformable to subparallel or oblique metamorphic cleavages. In the South-Veporic area, they are undoubtedly related to the metamorphic-mylonitic fabrics of the basement granitoids and their metamorphic mantle rocks. The magnetic fabrics in granitoid rocks of the South-Veporic area (S of the Pohorela sinistral strike-slip fault) are influenced with micromechanisms of dominated low-temperature ductile deformation and partial dynamic recrystallization. We ascribe the observed coaxial magnetic fabrics in metamorphic, granitic and sedimentary rocks to an Alpine collision (110-95 Ma; P-max similar to 8-9 kbar, T-max similar to 530 degreesC) and extension tectonometamorphic events (95-80 Ma; up to P similar to 4-5 kbar, T similar to 300 degreesC) of Cretaceous age. The magnetic fabrics seem not to be strongly dependent on temperatures until the medium part of the amphibolite facies (as in this example), but they are strongly following simultaneous deformational low-temperature to medium-temperature meso- and microfabrics. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 63]
机译:在构造西喀尔巴阡山脉中部的Veporic Unit中,磁性构造在变质(年龄为早古生代),花岗岩(年龄为早古生代至晚期)和沉积覆盖岩(二叠纪/三叠纪)中或多或少共面且同轴年龄)。变质和花岗质基底岩以及沉积(火山岩)覆盖岩中的磁性纤维似乎反映了白垩纪(原始为Variscan)基底复活的很宽的PT条件,与下部沉积岩的渐进变质有关。 Greenschist(在北部-Veporic地区)或上部Greenschist到在碰撞楔中的碰撞埋藏过程中下部的闪石相(在South-Veporic区域)。此外,还有一些变形区,在这些变形区中,由于与沿(正弦)横向走滑和正断层的伸展掘出有关的韧性变形而形成了磁性织物。晚期的褶皱基本上没有改变以前的磁性织物。北部-Vorporic地区沉积覆盖岩中的磁性结构要么与仍可识别的层理平面(在主管层中)相关,且具有平行叠加的变质吸水性,要么与次平行或倾斜的变质裂变相适应。在南部-Voporic地区,它们无疑与基底花岗岩和它们的变质地幔岩石的变质-次摩尔构造有关。南部-Vorporic区域(Pohorela左旋走滑断裂的S)的花岗岩岩石中的磁性结构受主导的低温韧性变形和部分动态再结晶的微机制影响。我们将在变质,花岗岩和沉积岩中观察到的同轴磁性织物归因于高山碰撞(110-95 Ma; P-max近似于8-9 kbar,T-max近似于530摄氏度)和伸展构造变态事件(95-80) Ma;至白垩纪年龄的P接近4-5 kbar,T接近300摄氏度。磁性织物似乎直到角闪石相的中部才强烈地依赖于温度(如本例所示),但是它们强烈地伴随着从低温到中温的中微织物的同时变形。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:63]

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