首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Strain fabric evolution within and near deformed igneous sheets: The Sudbury Igneous Complex, Canada
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Strain fabric evolution within and near deformed igneous sheets: The Sudbury Igneous Complex, Canada

机译:变形火成薄片内部和附近的应变织物演化:加拿大萨德伯里火成岩综合体

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摘要

Deformation structures differing in style and orientation within a given terrane are often attributed to distinct tectono-metamorphic events. However, mechanical heterogeneities may locally cause strain perturbations that can have a profound effect on the geometry of such structures. Here we document highly variable orientations of planar structures, metre- to kilometre-scale folds and shortening directions inferred from brittle fault analysis within the synclinal and layered Sudbury Igneous Complex (SIC) and its Huronian host rocks. NW-SE shortening during Palaeoproterozoic deformation led to the formation of planar structures in the host rocks that are parallel to the NE-SW striking contact of the southern SIC. During deformation, local contact-parallel shortening became more important than regional NW-SE shortening and generated contact-orthogonal planar mineral fabrics and folds. Local contact-parallel shortening is attributed to the shape change of the southern SIC from a convex outward to a concave inward curvi-planar geometry. Contact-parallel shortening accounts for the formation of a previously unidentified kilometre-scale buckle fold in the SIC and respective axial-planar mineral fabrics in Huronian host rocks. This buckle fold shares similar structural characteristics with known higher-order buckle folds of the eastern SIC. We suggest that non-cylindrical buckling and associated mineral fabric development accommodated the shape change of the SIC. This resulted in mutually perpendicular fabric orientations, which are compatible with overall NW-SE shortening. The original shape of the SIC seems to have had a profound influence particularly on the geometry of metamorphic foliations. Our structural analysis supports earlier structural studies advocating that highly discordant planar strain fabrics can be generated by local strain perturbations near igneous sheets under uniform regional shortening.
机译:给定地层中样式和方向不同的变形结构通常归因于明显的构造变质事件。但是,机械异质性可能会局部引起应变扰动,从而对此类结构的几何形状产生深远影响。在这里,我们记录了在向斜和分层的萨德伯里火成岩复合体(SIC)及其休伦河宿主岩中的脆性断层分析推断出的平面结构,米至千米尺度的褶皱和缩短方向的高度变化的方向。 NW-SE在古元古代变形过程中的缩短导致在主岩中形成了与南部SIC的NE-SW撞击接触平行的平面结构。在变形过程中,局部接触平行起皱变得比区域NW-SE起皱更重要,并产生了接触正交的平面矿物织物和褶皱。局部平行接触的缩短归因于南部SIC的形状从凸向外弯曲到凹向内弯曲的平面几何形状。平行接触缩短导致了SIC中以前未知的千米尺度的褶皱褶皱的形成,以及休伦河主岩中相应的轴向平面矿物纤维的形成。该带扣折叠具有与东部SIC的已知高阶带扣折叠相似的结构特征。我们建议非圆柱形屈曲及相关矿物织物的发展适应了SIC的形状变化。这导致相互垂直的织物方向,与整个NW-SE缩短兼容。 SIC的原始形状似乎对变质叶的几何形状产生了深远的影响。我们的结构分析支持较早的结构研究,这些研究主张在均匀区域缩短的情况下,火成薄片附近的局部应变扰动会产生高度不协调的平面应变织物。

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