首页> 外文期刊>Journal of structural geology >Late-Grenvillian channel flow in the central Grenville Province (Manicouagan Reservoir area): New constraints from a structural and geochronological study of the Allochthon Boundary Thrust
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Late-Grenvillian channel flow in the central Grenville Province (Manicouagan Reservoir area): New constraints from a structural and geochronological study of the Allochthon Boundary Thrust

机译:Grenville省中部(Manicouagan水库区)的晚Grenvillian河道水流:来自Allochthon边界推力的结构和年代学研究的新约束

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摘要

Crucial to reconstructing the tectonic evolution of the Grenvillian Orogeny is the characterisation of the Allochthon Boundary Thrust (ABT) separating the Parautochthonous from the structurally overlying Allochtonous belts. Combined with previously published data, our structural analysis complemented with an analysis of geophysical lineaments conducted south of the Manicouagan Reservoir, revealed that top-to-the-NNE shearing in the hanging wall occurred several ten's of myrs prior to top-to-the-NNW shearing in its footwall. The newly mapped down-to-the-SE Thachic shear-zone cuts down section from the hanging wall, crosscutting the ABT and deforming Parautochtonous Belt rocks in its footwall. Timing of this normal-sense shearing event is constrained from syn-kinematic leucosome and leucogranite between 993 +/- 3 Ma and 986 +/- 0.5 Ma, respectively. This timing overlaps that of reverse-sense shearing in the underlying Parautochtonous Belt documented previously. Coeval normal-, coaxial, and reverse-sense shearing at upper, middle and lower structural levels, respectively, of a partially molten rock-panel, favours a channel flow (or extrusion) rather than an orogenic wedge model. By incorporating a slice of allochtonous rocks, with diverging lineation at its roof and by moulding the shape of a rigid pluton, the flow within this channel was heterogenous, as predicted in previously proposed numerical models.
机译:重建格伦维尔造山带的构造演化至关重要的是异原界边界推力(ABT)的特征,该副异界边界推力将副原界与上覆的异原带分离。结合先前发布的数据,我们的结构分析与对Manicouagan水库南部进行的地球物理岩相分析相辅相成,揭示出吊墙顶顶至NNE的剪切发生在顶顶至顶极的几十个迈尔。 NNW剪切在其底壁中。新绘制的从下至东南的Thachic剪切带从悬壁上切下了部分,横切了ABT,并使底盘中的旁高压带岩石变形。该正常意义上的剪切事件的时间分别由同运动学的隐色体和白云母限制在993 +/- 3 Ma和986 +/- 0.5 Ma之间。该时间点与先前记录的下层的Parautochtonous带中的反义剪切时间重叠。分别在部分熔融的岩石面板的上部,中部和下部结构水平上分别进行的正态,共轴和反向感知剪切,有利于通道流动(或挤压),而不是造山楔模型。如先前提出的数值模型所预测的那样,通过结合一片异质岩石,在其屋顶处的发散线并模制刚性岩体的形状,该通道内的流动是非均质的。

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