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Kinematic vorticity analysis and evolving strength of mylonitic shear zones: New data and numerical results

机译:运动性涡度分析和淀粉样剪切带的演化强度:新数据和数值结果

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摘要

The kinematic vorticity number is an important quantity in structural geology and tectonics, giving a nonlinear ratio of simple shear to pure shear deformation. We use natural observations and numerical models to show how rigid clast methods for determining the kinematic vorticity number (Wk) are compromised where strain localization occurs at the matrix-clast interface. Our numerical results show that the critical shape factor cutoff between permanently rotating and stable clasts, used to determine Wk, is highly sensitive to coupling between the clast and the matrix. This finding provides an elegant explanation for the fact that rigid clast methods tend to underestimate Wk relative to other methods. We present numerically determined envelopes for clast behavior across a range of kinematic vorticity numbers, clast shape factors, and matrix-clast coupling. Our numerical models show that the shape-preferred orientations of feldspar clasts trend toward the positions of mica fish with increasing localization at the clast boundary, suggesting that mica fish behave as highly lubricated clasts. Our data and numerical results show that the clast-matrix interface may be several orders of magnitude weaker than the surrounding matrix and that weak interfaces can lead to a marked drop in the bulk shear strength of faults and shear zones.
机译:运动涡度数在结构地质学和构造学中是一个重要的量,它给出了简单剪切与纯剪切变形的非线性比率。我们使用自然观察和数值 模型来显示确定运动局部涡度(W k )的刚性震荡方法如何在应变局部化 sup> 出现在matrix-clast界面上。我们的数值结果 表明,用于确定W k 的永久 旋转和稳定劈裂之间的临界形状因子截止值非常高 < / sup>对夹层与矩阵之间的耦合敏感。该 查找为以下事实提供了一个优美的解释:相对于其他方法,刚性 破发方法往往会低估W k 。 >我们提出了数值确定的包络线,用于包络运动行为 ,范围包括运动涡度数,包络形状因子, 和基质-碎裂耦合。我们的数值模型表明,长石碎屑的 形状优先取向在 碎屑边界处随着定位的增加而趋向于 云母鱼的位置。云母鱼表现出高度润滑的 碎屑。我们的数据和数值结果表明,clast-matrix 界面可能比 周围矩阵弱几个数量级,并且弱的界面会导致明显的 < / sup>降低断层和剪切带的整体抗剪强度。

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  • 来源
    《Geology》 |2009年第12期|1075-1078|共4页
  • 作者单位

    Department of Earth Sciences, University of Maine, Orono, Maine 04469, USA;

    Department of Earth Sciences, University of Maine, Orono, Maine 04469, USA;

    Department of Earth Sciences, University of Maine, Orono, Maine 04469, USA;

    Department of Earth Sciences, University of Maine, Orono, Maine 04469, USA;

    Department of Earth Sciences, University of Maine, Orono, Maine 04469, USA;

    Department of Geology, Middlebury College, Middlebury, Vermont 05753, USA;

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