首页> 外文期刊>Journal of structural geology >Porosity and particle shape changes leading to shear localization in small-displacement faults
【24h】

Porosity and particle shape changes leading to shear localization in small-displacement faults

机译:孔隙率和颗粒形状的变化导致小位移断层中的剪切局部化

获取原文
获取原文并翻译 | 示例
           

摘要

A microstructural study of shear localization in fault gouge was carried out in small-displacement faults so there would be minimum masking effects from a complex deformation history. We studied particle size, shape, and porosity changes in gouge adjacent to zones of shear localization in natural and synthetic gouges subjected to shear displacements δ5, of up to 1.2 m. Scanning electron microscope images were used for estimating image porosity Φ1, and measuring particle size of the deformed and undeformed gouges. The particle size data were used for calculating simulated porosity Φs from computer-generated simple fractal gouge model of each sample. Modeled microstructures contained round grains and a fractal distribution matched to that of the measured natural samples. Changes in Φ1, Φs. and Φ1/Φs with increasing 6 were used for tracking changes in particle shape and porosity of the gouges precursory to shear localization. The Φ1 and Φs values for the natural and synthetic gouges converge at δ ~ 0.1 m, suggesting that gouge particles adjacent to shear localization sites tend to become rounded. Porosity for such densified regions of the gouge adjacent to Y-shear zones was determined to be <% at large displacements. In the same regions, the porosity reductions were also associated with decreased sorting coefficient and fractal dimensions D > 2.6. The study suggests that brittle shear localization may involve favorably-oriented micro porous pockets of gouge that result from competing changes in particle shape and particle size, which tend to affect gouge porosity in different ways.
机译:在小位移断层中进行了断层泥中剪切局部化的微观结构研究,因此在复杂的变形历史中掩盖效应将最小。我们研究了受剪切位移δ5高达1.2 m的天然和合成凿中邻近剪切局部化区域的凿的粒度,形状和孔隙率变化。使用扫描电子显微镜图像来估计图像孔隙率Φ1,并测量变形和未变形的凿子的粒径。粒度数据用于根据计算机生成的每个样品的简单分形凿模型计算孔隙度Φs。建模的微结构包含圆形晶粒,并且分形分布与所测量的自然样品相匹配。 Φ1,Φs的变化。和Φ1/Φs随6的增加被用来追踪颗粒形状和孔隙度的变化,这些现象是切屑局部化的前兆。天然和合成凿子的Φ1和Φs值在δ〜0.1 m处收敛,这表明与剪切定位点相邻的凿子颗粒趋于变圆。在较大的位移下,Y剪切区附近的凿孔的这种致密区域的孔隙率确定为<%。在相同区域,孔隙率的降低还与降低的分选系数和分形维数D> 2.6有关。研究表明,脆性剪切局部化可能涉及沿良好方向定向的微细孔洞,这是由于颗粒形状和粒径的竞争性变化而引起的,这些变化往往以不同的方式影响孔洞的孔隙度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号