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Kinematic and tectonic significance of microstructures and crystallographic fabrics within quartz mylonites from the Assynt and Eriboll regions of the Moine thrust zone, NW Scotland

机译:苏格兰西北部莫因逆冲带Assynt和Eriboll地区石英硅质岩中微结构和晶体学结构的运动学和构造意义

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摘要

Using a combination of optical microscopy and X-ray texture goniometry, an integrated microstructural and crystallographic fabric study has been made of quartz mylonites from thrust sheets located beneath, but immediately adjacent to, the Moine thrust in the Assynt and Eriboll regions of NW Scotland. A correlation is established between shape fabric symmetry and pattern of crystallographic preferred orientation, a particularly clear relationship being observed between shape fabric variation and quartz a-axis fabrics. Coaxial strain paths dominate the internal parts of the thrust sheets and are indicated by quartz c- and a-axis fabrics which are symmetrical with respect to foliation and lineation. Non-coaxial strain paths are indicated within the more intensely deformed quartzites located near the boundaries of the sheets by asymmetrical c- and a-axis fabrics. These kinematic interpretations are supported by microstructural studies. At the Stack of Glencoul in the northern part of the Assynt region, the transition zone between these kinematic (strain path) domains is located at approximately 20 cm beneath the Moine thrust and is marked by a progression from symmetrical cross-girdle c-axis fabrics (30cm beneath the thrust), through asymmetrical cross-girdle c-axis fabrics to asymmetrical single girdle c-axis fabrics (0·5 cm beneath the thrust). Tectonic models (incorporating processes such as extensional flow, gravity spreading and tectonic loading) which may account for the presence of strain path domains within the thrust sheets are considered, and their compatibility with local thrust sheet geometries assessed
机译:通过结合使用光学显微镜和X射线织构测角技术,从位于西北苏格兰苏格兰阿辛(Asynt)和埃里博尔(Eriboll)地区但紧邻莫奈推力的推力板中,对石英my石进行了显微组织和晶体学的综合研究。在形状织物的对称性与晶体学优选取向的图案之间建立了相关性,在形状织物的变化与石英α轴织物之间观察到特别清楚的关系。同轴应变路径主导着止推片的内部,并由相对于叶面和线条对称的石英c轴和a轴织物表示。非同轴应变路径是通过不对称的c轴和a轴织物在板边界附近的更剧烈变形的石英岩中指示的。这些运动学解释得到微观结构研究的支持。在Assynt地区北部的Glencoul叠层中,这些运动学(应变路径)域之间的过渡带位于Moine推力下方约20 cm处,并以对称的跨束带c轴织物的进展为标志(在推力下方30厘米),穿过不对称的交叉腰带c轴织物到不对称的单腰带c轴织物(在推力下方0·5厘米)。考虑了可能解释逆冲断层内部存在应变路径域的构造模型(包括伸展流,重力扩展和构造载荷等过程),并评估了它们与局部逆冲断层几何形状的兼容性

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