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Empirical paths of poles to planes (eppps) constrain the kinematics of geological shear zones

机译:极点到平面(eppps)的经验路径限制了地质剪切带的运动学

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Ductile shear zones are tabular bodies of deformed rocks bound by less deformed wall rocks. This work introduces a simple empirical approach to analysing the 3D kinematics of shear zones. The orientations of pre-shear planar markers distorted across natural shear zones by local strains are systematically measured and plotted as poles on lower hemisphere equal area projections that constrain smooth empirical paths of poles to planes (eppps). Such eppps recording local strain gradients are used to fix a reference frame to the plane of greatest shear in any homogeneous bulk strain. Assuming that space can be taken as a proxy for time, the curvatures of pre-shear planar markers across shear zones are interpreted as the records of the 3D bulk strain histories of shear zones. The sig- or zig-moidal symmetries of sheared markers record different amounts of the same general strain within the same overall movement pattern (i.e. in a constant flow field) whatever its geometry or history. In effect eppps represent the strain memories of shear zones with successively inward readings recording successively younger shearing. In planes other than the bulk XY, great circle eppps indicate simple shear while hyperbolic eppps indicate pure shear. Eppps for suites of shear zones in Proterozoic gneisses in Sweden exhibit the parabolic shapes indicative of pure rather than simple shear.
机译:延性剪切带是由变形程度较小的围岩约束的变形岩石的板状体。这项工作介绍了一种简单的经验方法来分析剪切带的3D运动学。系统地测量了由于局部应变而在自然剪切区变形的剪切前平面标记的方向,并将其绘制为下半球等面积投影上的极点,从而限制了极点到平面的平滑经验路径(eppps)。这种记录局部应变梯度的eppps用于将参考系固定到任何均质整体应变中最大剪切平面上。假设可以将空间视为时间的替代物,则将剪切区域上的预剪切平面标记的曲率解释为剪切区域的3D大应变历史记录。无论其几何形状或历史如何,剪切标记的S形或Z形对称性都记录在相同的整体运动模式(即恒定流场)内的不同量的相同总应变。实际上,eppps代表了剪切带的应变记忆,其连续向内的读数连续记录了年轻的剪切。在大块XY以外的平面中,大圆eppps表示简单剪切,而双曲线eppps表示纯剪切。瑞典元古代片麻岩剪切带套件的Eppps表现出抛物线形,表示纯剪切而不是简单剪切。

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