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Stylolite interfaces and surrounding matrix material: Nature and role of heterogeneities in roughness and microstructural development

机译:Stylolite界面和周围的基质材料:粗糙度和微观结构发展中异质性的性质和作用

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摘要

Rough pressure solution interfaces, like stylolites, are one of the most evident features of localized slow deformation in rocks of the upper crust. There is a general consensus that the development of these rough structures is a result of localized, stress enhanced, dissolution of material along a fluid filled interface, but little is known on the initiation of this roughness. The aim of this article is to reveal the role of heterogeneities initially present in the host-rock on roughness initiation. This should give insights on whether stylolite roughness is generated by a stress-induced instability or by the presence of disorder in the material (i.e. quenched noise). We use a microstructural approach based on SEM/EBSD analysis combined with orientation contrast (OC) image analysis of stylolites in limestones. We found that the stylolite roughness is induced by heterogeneities in the host rock (clay particles and detrital quartz grains in our case). In addition, close to mature stylolite interfaces matrix modifications occur, which can be attributed to the compaction along the stylolite. The grain size decreases by 15-25% and a pre-existing shape- and lattice-preferred orientation (SPO, LPO) are significantly modified in the vicinity of the stylolite. The results presented here imply that localized pressure solution along stylolites is not necessarily restricted to the actual interface but influences the adjacent matrix. The heterogeneity data might serve as a quantitative basis for elaborate numerical models of localized compaction.
机译:像笔石一样,粗糙的压力溶液界面是上地壳岩石局部缓慢变形的最明显特征之一。人们普遍认为,这些粗糙结构的发展是材料沿流体填充界面局部定位,应力增强,溶解的结果,但对于这种粗糙的开始知之甚少。本文的目的是揭示粗糙度在初始时存在于主体岩石中的异质性的作用。这应该提供有关是否因应力引起的不稳定性或材料中存在无序现象(即淬火噪声)而产生的斜纹石粗糙度的见解。我们使用基于SEM / EBSD分析与石灰石中斜方石的取向对比(OC)图像分析相结合的微结构方法。我们发现,恒石的粗糙度是由基质岩石中的异质性引起的(在我们的案例中是粘土颗粒和碎屑石英颗粒)。此外,发生接近成熟的星状卫星界面的矩阵修改,这可以归因于沿星状卫星的压实。晶粒尺寸减小了15%至25%,并且在接闪石附近显着地改变了预先存在的形状和晶格优先取向(SPO,LPO)。此处显示的结果表明,沿着笔石的局部压力解并不一定限于实际界面,而是会影响相邻矩阵。异质性数据可以作为详细的局部压实数值模型的定量基础。

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  • 来源
    《Journal of structural geology》 |2010年第8期|p.1070-1084|共15页
  • 作者单位

    Tectonophysics, Institute of Ceosciences, Johannes Gutenberg University, Becherweg 21, D-55128 Mainz, Germany,Geological Survey of Austria, Neulinggasse 38, A 1030 Vienna, Austria;

    Department of Geology and Geochemistry, Stockholm University, 10691 Stockholm, Sweden;

    University Joseph Fourier - Grenoble I/CNRS/LGCA/OSUG, BP 53, F-38041 Grenoble, France,Physics of Geological Processes, University of Oslo, Norway;

    Tectonophysics, Institute of Ceosciences, Johannes Gutenberg University, Becherweg 21, D-55128 Mainz, Germany;

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

    stylolite; pressure solution; heterogeneities; roughness; EBSD;

    机译:花岗石压力溶液异质性粗糙度欧洲可持续发展委员会;

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