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Origin of deformation bands in argillaceous sediments at the toe of the Nankai accretionary prism, southwest Japan

机译:日本西南部增生棱镜底部的泥质沉积物中形变带的起源

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Deformation bands in argillaceous sediments at the toe of the Nankai accretionary prism are roughly planar, ~ 1 -10 mm thick, bedding-oblique zones. The bands are typically developed as two oppositely dipping sets. A band of one set can be displaced by the slickenlined surface of the oppositely dipping band, showing a reverse slip with respect to a horizontal plane. Deformation bands commonly consist of thinner subbands that are oblique or parallel to the boundaries of the deformation bands. The subbands also display a reverse slip with respect to a horizontal plane, and particles within subbands are oriented perpendicular to the maximum principal stress (σ_1), regardless of the dips of the subbands. Physical property analysis using an X-ray computed tomography scanner demonstrates that porosity reduction in the deformation bands relative to the surrounding undeformed material ranges from 1 to 6%. The deformation bands are compactive shear bands formed under subhorizontal σ_1, associated with northwest-directed plate convergence, and subbands arise from a combination of reverse sense of shear and flattening perpendicular to σ_1, with their geometries producing the S-C aspect observed in sheared clayey sediments or ductile metamorphic shear zones.
机译:南开增生棱柱脚趾处的泥质沉积物中的变形带大致呈平面状,约1 -10毫米厚,为层理倾斜区域。这些带通常形成为两个相对浸入的组。一组带子可以被相对浸入的带子的光滑表面移位,从而相对于水平面显示出反向滑动。变形带通常由较薄的子带组成,这些子带倾斜或平行于变形带的边界。子带还显示出相对于水平面的反向滑动,并且子带内的粒子定向为垂直于最大主应力(σ_1),而与子带的倾角无关。使用X射线计算机断层扫描仪进行的物理性能分析表明,相对于周围未变形的材料,形变带中的孔隙率降低了1%至6%。形变带是在水平方向σ_1下形成的紧压剪切带,与西北向板块汇聚有关,并且这些子带是由反向剪切和垂直于σ_1展平的组合产生的,其几何形状在剪切黏土沉积物中观察到了SC方面。韧性变质剪切带。

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