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首页> 外文期刊>Swiss Journal of Geosciences >Late Alpine brittle faulting in the Rotondo granite (Switzerland): deformation mechanisms and fault evolution
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Late Alpine brittle faulting in the Rotondo granite (Switzerland): deformation mechanisms and fault evolution

机译:Rotondo花岗岩(瑞士)中的晚期高山脆性断裂:变形机制和断裂演化

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The unlined Bedretto tunnel in the Central Swiss Alps has been used to investigate in detail the fault architecture and late Alpine brittle faulting processes in the Rotondo granite on macroscopic and microscopic scales. Brittle faults in the late Variscan Rotondo granite preferentially are situated within the extent of preexisting ductile shear zones. Only in relatively few cases the damage zone extends into or develops in the previously undeformed granite. Slickensides suggest a predominant (dextral) strike-slip movement along these steeply dipping and NE–SW-striking faults. Microstructures of these fault rocks illustrate a multi-stage retrograde deformation history from ductile to brittle conditions up to the cessation of fault activity. In addition these fabrics allow identifying cataclastic flow, fluid-assisted brecciation and chemical corrosive wear as important deformation mechanisms during this retrogressive deformation path. Based on the analysis of zeolite microfabrics (laumontite and stilbite; hydrated Ca–Al- and Na–Ca–Al–silicate, respectively) in fault breccias, cataclasites and open fractures we conclude, that the main phase of active brittle faulting started below 280°C and ceased ca. 14 Ma ago at temperatures slightly above 200°C. This corresponds to a depth of approx. 7 km.
机译:瑞士中部阿尔卑斯山的无衬砌贝德雷托隧道已被用于宏观和微观尺度上详细研究Rotondo花岗岩的断层构造和后期的高山脆性断层过程。 Variscan Rotondo晚期花岗岩中的脆性断层优先位于先前存在的韧性剪切带范围内。仅在极少数情况下,损坏区域会延伸到先前未变形的花岗岩中或在其中发育。 Slickensides建议沿这些陡倾和NE–SW冲断断裂的主要(右旋)走滑运动。这些断层岩石的微观结构说明了从韧性到脆性条件直至断层活动停止的多阶段逆行变形历史。另外,这些织物允许在这种渐进的变形路径中,将碎裂流,流体辅助的破裂和化学腐蚀磨损识别为重要的变形机制。根据对断层角砾岩,白云母和开裂裂缝中的沸石微结构(月桂石和闪石;分别为水合Ca-Al-和Na-Ca-Al-硅酸盐)的分析,我们得出结论,活动脆性断层的主要阶段始于280以下℃,停止加热。 14 Ma以前,温度略高于200°C。这对应于大约3mm的深度。 7千米。

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