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Kinematic and rheological model of exhumation of high pressure granulites in the Variscan orogenic root: example of the Blansky les granulite, Bohemian Massif, Czech Republic

机译:瓦里斯卡造山带中高压花岗石掘出的运动学和流变模型:捷克共和国波西米亚地块Blansky les花岗石的实例

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摘要

A large-scale relict domain of granulite facies deformation fabrics has been identified within the Blansky les granulite body. The granulite facies mylonitic fabric is discordant to the dominant amphibolite facies structures of the surrounding retrograde granulite. The complex geometry of retrograde amphibolite facies fabric indicates a large-scale fold-like structure, which is interpreted to be a result of either crustal-scale buckling of an already exhumed granulite sheet or active rotation of a rigid granulite facies ellipsoidal domain in kinematic continuity with the regional amphibolite facies deformation. We argue that both concepts allow similar restoration of the original granulite facies fabrics prior to the amphibolite facies deformation and "folding". The geometry of the granulite facies foliations coincides with the earliest fabrics in the nearby mid-crustal units suggesting complete mechanical coupling between the deep lower crust and the mid-crustal levels during the vertical movements of crustal materials. Microstructures indicate grain-size sensitive flow enhanced by the presence of silicate melts at deep crustal levels and a beginning of an exhumation process of low viscosity granulites through a vertical channel. The amphibolite facies fabrics developed at middle crustal levels and their microstructures indicate significant hardening of feldspar-made rigid skeleton of the retrograde granulite. Increase in the strength of the granulite allowed an active buckling or a rigid body rotation of the granulite sheet, which acted as a strong layer inside the weaker metasediments.
机译:在Blansky les粒岩体内发现了大规模的粒状相变形织物遗迹域。花岗石相的似棉质构造与周围逆向花岗石的主要闪石相相结构不一致。逆向闪石岩相织物的复杂几何结构表明存在大规模的褶皱状结构,这可能是由于已掘出的粒状岩片的地壳尺度屈曲或运动连续性中刚性粒状岩相椭圆形域的主动旋转所致。随区域闪长岩相变形。我们认为,两个概念都允许在角闪石相变形和“折叠”之前对原始粒状相织物进行类似的恢复。粒相相叶的几何形状与附近中地壳单元中最早的织物相吻合,表明在地壳物质垂直运动过程中,深部下地壳与中地壳之间完全机械耦合。微观结构表明,由于在深地壳水平存在硅酸盐熔体,以及通过垂直通道的低粘度粒状砾石发掘过程的开始,晶粒尺寸敏感流得以增强。处于中地壳水平的闪长岩相织物及其微观结构表明,长石制成的逆向粒状硬质骨架明显硬化。花岗石强度的增加允许花岗石片材主动屈曲或刚体旋转,这在较弱的变质沉积物内部起到了坚固的作用。

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