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Mechanisms of flexural flow folding of competent single-layers as evidenced by folded fibrous dolomite veins

机译:折叠的纤维状白云岩脉层证明了主管单层弯曲流折叠的机理

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摘要

Flexural flow is thought unlikely to occur in naturally deformed, competent isotropic single-layers. In this study we discuss a particular case of folded bedding-parallel fibrous dolomite veins in shale, in which the internal strain pattern and microstructural deformation features provide new insights in the mechanisms enabling flexural flow folding. Strain in the pre-folding veins is accommodated by two main mechanisms: intracrystalline deformation by bending and intergranular deformation with bookshelf rotation of dolomite fibres. The initially orthogonal dolomite fibres allowed a reconstruction of the strain distribution across the folded veins. This analysis shows that the planar mechanical anisotropy created by the fibres causes the veins to approximate flexural flow. During folding, synkinematic veins overgrow the pre-folding fibrous dolomite veins. Microstructures and dolomite growth morphologies reflect growth during progressive fold evolution, with evidence for flexural slip at fold lock-up. Homogeneous flattening, as evidenced by disjunctive axial-planar cleavage, subsequently modified these folds from class 1B to 1C folds. Our study shows that the internal vein fabric has a first-order influence on folding kinematics. Moreover, the fibrous dolomite veins show high viscosity contrasts with the shale matrix, essential in creating transient permeability for subsequent mineralising stages in the later synkinematic veins during progressive folding.
机译:认为弯曲变形不太可能发生在自然变形的主管各向同性单层中。在这项研究中,我们讨论了页岩中顺层平行的平行纤维状白云岩脉状折叠的特殊情况,其中内部应变模式和微结构变形特征为实现挠性流折叠的机理提供了新见解。预折叠静脉中的应变通过两种主要机制来调节:弯曲引起的晶体内变形和白云石纤维书架旋转引起的晶间变形。最初正交的白云石纤维允许重建折叠静脉中的应变分布。该分析表明,纤维产生的平面机械各向异性会导致静脉近似弯曲流动。在折叠过程中,运动学上的静脉使折叠前的纤维状白云石静脉过度生长。微结构和白云石的生长形态反映了渐进性褶皱演化过程中的生长,并在褶皱锁定时出现了弯曲滑动的证据。均质的扁平化,如轴向平面解理分裂所证明的,随后将这些褶皱从1B类改变为1C褶皱。我们的研究表明,内静脉织物对折叠运动学具有一阶影响。此外,纤维状白云石脉与页岩基质表现出较高的粘度对比,这在逐步折叠过程中为后续动因脉中的后续矿化阶段创造瞬态渗透性至关重要。

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