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Chert nodules in pelagic limestones as paleo-stress indicators: A 3D geomechanical analysis

机译:浮游石灰岩中的切尔特结核作为古应力指标:3D地质力学分析

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The objective of this study is to explain the occurrence and paleo-stress significance of 3D joint clustering in chert nodules (inclusions) within a layered pelagic limestone sequence. The difference in stiffness between chert and limestone is about one order of magnitude. Field observations show that fracture localization occurs mostly in chert nodules as opposed to the limestone matrix. We show with a novel three-dimensional geomechanical modelling analysis how the inclusion (ellipsoid) axes ratio influences fracture intensity and propagation within and outside the chert nodules and how the nodules record different deformation phases under different remote stress conditions. From field observations, we recognize two joint sets in the chert nodules: joints parallel and normal to the plane containing the two major axes of the nodule (bedding plane). In the nodules, the normal-to-bedding joints are interpreted to be younger than the parallel-to-bedding ones. The modelling of the 3D Eshelby solution for the stress field inside the chert nodule and in the surrounding matrix is consistent with our field observations and it suggests a strong differential stress during deformation (sigma(r)(max)/sigma(r)(max) < 0.3). Chert nodules in a deformed carbonate sequence, therefore, can provide important clues on the paleo-stress conditions, the temporal sequence of events, and fracture distribution heterogeneity.
机译:这项研究的目的是解释层状上层石灰岩层序中的硅质结节(包含物)中3D关节簇的发生和古应力意义。石和石灰石之间的刚度差约为一个数量级。现场观察表明,与石灰石基质相反,裂缝的定位主要发生在石结核中。我们用新颖的三维地质力学模型分析显示了夹杂物(椭球)轴比如何影响fracture石小结节内外的断裂强度和传播,以及小结节在不同的远程应力条件下如何记录不同的变形相。从野外观察中,我们在the石节结中识别出两个关节组:与包含结节的两个主轴线(顺层平面)的平面平行且垂直的关节。在结节中,法线与顺层的关节比平行于顺层的关节年轻。石结节内部和周围基质中应力场的3D Eshelby解决方案建模与我们的现场观测结果一致,它表明了变形期间的强微分应力(sigma(r)(max)/ sigma(r)(max )<0.3)。因此,在碳酸盐岩变形序列中的切尔特结核可以提供有关古应力条件,事件的时间序列以及裂缝分布非均质性的重要线索。

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