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Small-scale ductile shear zones as transposed rheologically weak domains: A numerical modeling investigation and practical application

机译:小尺度韧性剪切带作为流变弱区域的转位:数值模拟研究与实际应用

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摘要

We test the hypothesis that small ductile shear zones are developed from initial rheologically weak domains. We regard weak domains as ellipsoidal inhomogeneities and apply Eshelby's formalism extended for power-law viscous materials to investigate the kinematics and finite strain evolution of the partitioned flow fields in weak domains. We show that, under an imposed bulk flow field, weak domains, regardless of their initial shapes and orientations, deform into zone-like features at relatively small bulk strains and the deformation paths inside weak domains have all characteristics expected in ductile shear zones. We apply our model to the Cap de Creus area Spain, where abundant small ductile shear zones exist. To relate the fabrics inside these shear zones with the regional deformation, we take a multi-scale approach. We assume that the area contained many weak domains which were randomly shaped and oriented initially and were deformed into shear zones eventually in response to the regional flow. We constrain the regional flow field by the fabric patterns across the area and compute numerically the partitioned flow fields in individual weak domains. The latter are related to fabrics inside shear zones. Our model reproduces first-order features of field-observed fabrics. Although the deformation path of each shear zone was close to simple shearing, the deformation of the whole belt was not. Our approach also resolves the strain compatibility problem for a finite-sized shear zone embedded in a far less deformed country rock.
机译:我们检验了从初始流变学上较弱的区域发展出小的韧性剪切带的假设。我们将弱域视为椭圆形的不均匀性,并应用Eshelby的形式主义扩展到幂律粘性材料,以研究弱域中分隔流场的运动学和有限应变演化。我们表明,在强加的整体流场下,无论其初始形状和方向如何,薄弱区域在相对较小的整体应变下都会变形为带状特征,而薄弱区域内部的变形路径具有延性剪切带中预期的所有特征。我们将模型应用于西班牙卡普德克雷乌斯(Cap de Creus)地区,那里存在大量的小韧性剪切带。为了将这些剪切区内的织物与区域变形联系起来,我们采用了多尺度方法。我们假设该区域包含许多薄弱区域,这些薄弱区域最初是随机成形和定向的,并最终响应于区域流动而变形为剪切带。我们通过整个区域中的织物模式约束区域流场,并通过数值计算各个弱域中的分区流场。后者与剪切区内的织物有关。我们的模型再现了现场观察的织物的一阶特征。尽管每个剪切区的变形路径接近于简单剪切,但整个带的变形却没有。我们的方法还解决了变形较小的乡村岩石中埋藏的有限尺寸剪切带的应变相容性问题。

著录项

  • 来源
    《Journal of structural geology》 |2013年第9期|184-198|共15页
  • 作者

    Biwei Xiang; Dazhi Jiang;

  • 作者单位

    Department of Earth Sciences, China University of Geosciences, Wuhan 430074, China,Department of Earth Sciences, Western University, London, Ontario, Canada N6A 5B7;

    Department of Earth Sciences, Western University, London, Ontario, Canada N6A 5B7,Department of Geology, Northwest University, Xi'an 710069, China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ductile shear zone; Multiscale modeling; Fabric analysis; Mylonite; Cap de Crues;

    机译:韧性剪切带多尺度建模;面料分析;lon石;克鲁斯角;

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