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Pre-orogenic upper crustal softening by lower greenschist facies metamorphic reactions in granites of the central Pyrenees

机译:通过较低的磨碎机面部地壳软化在中央比利牛斯花岗岩中的变质反应

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Pre-kinematic greenschist facies metamorphism is often observed in granites and basement units of mountain belts, but rarely dated and accounted for in orogenic cycle reconstructions. Studying pre-kinematic alteration is challenging because of its usual obliteration by subsequent syn-kinematic metamorphism often occurring at conditions typical of the brittle-ductile transition. It is, however, to be expected that pre-kinematic alteration has major implications for the rheology of the upper crust. In the 305 Ma-old Variscan basement of the Bielsa massif (located in the Axial Zone of the Pyrenees), successive fluid-rock interaction events are recorded in granites below 350 degrees C. Combined microstructural and petrographic analysis, low-T thermobarometry and in situ U-Th/Pb dating of anatase, titanite and monazite show extensive pre-orogenic (pre-Alpine) and pre-kinematic alteration related to feldspar sericitization and chloritization of biotite and amphibole at temperatures of 270-350 degrees C at 230-300 Ma. This event is followed by a second fluid-rock interaction stage marked by new crystallization of phyllosilicates at 200-280 degrees C and is associated with the formation of mylonitic shear zones and fractures parallel to the shear planes. U-Pb anatase and monazite ages as well as the microtextural relationships of accessory minerals suggest an age for this event at 40-70 Ma, consistent with independent regional geology constraints. The Variscan basement was therefore softened at late to post-Variscan time, at least 150-200 Ma before the main Alpine shortening while Alpine-age compression (c. 35-50 Ma) leads to the formation of a dense net of mylonites. The associated deformation, both distributed at the scale of the Bielsa massif and localized at decametric scale in mylonitic corridors, precedes the strain localization along the major thrusts of the Axial Zone. The Bielsa massif is a good example where inherited, pre-orogenic upper crustal softening controls the deformation patterns in granitic basement units through low-grade metamorphic reactions.
机译:在山腰的花岗岩和地下室单位中经常观察到前运动前的格式相变,但很少被造成orgencic循环重建。研究前运动前改变是挑战,因为随后的Syn-kinemematic变质经常发生在脆性 - 延展性转变的典型条件下通常发生的。然而,预期预期对运动前的改变具有对上外壳的流变学具有重大影响。在Bielsa Massif(位于比利牛斯的轴向区域的305 ma-Old Variscan地下室)中,连续的流体岩石相互作用事件在350℃以下的花岗岩中记录。组合微观结构和岩体分析,低T热量测量和中原位U-Th / Pb anatase,二氧化钛和monazite的约会显示出广泛的orgensic(前alpine)和预思想的改变与Bieldspar Certication和Biotite的氯化和倒氯化,在270-350℃的温度下230-300嘛。然后,该事件之后是由200-280℃的新型文学结晶标记的第二流体岩相互作用阶段,并且与肌肌剪切区的形成与平行于剪切平面的裂缝相关联。 U-Pb锐钛矿和Monazite Ag以及附件矿物质的微妙关系表明这次活动的年龄在40-70 mA,与独立的区域地质限制一致。因此,瓦里昔风地下室随后延迟软化,至少150-200 mA在主要高山缩短前,而高山血液压缩(C.5-50MA)导致形成髓鞘的致密净。在Bielsa Massif的尺度下分布的相关变形,并在麦克隆走廊中置于欺诈标度,在轴向区域的主推力沿着轴向区域的应变定位之前。 Bielsa Massif是一种很好的例子,其遗传的前眶上地壳软化通过低级变质反应控制花岗岩地下室单元中的变形图案。

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