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Predicting the orientation of Joints from fold shape: Results of pseudo-three-dimensional modeling and curvature analysis

机译:从折叠形状预测关节的方向:伪三维建模和曲率分析的结果

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We treat layers of sedimentary rock as elastic plates and predict the orientations of joints by assuming that they open parallel to the maximum instantaneous stretch of a layer. Because the direction of maximum instantaneous stretch is parallel to the maximum curvature of a surface, we hypothesize that joints will trend parallel to the minimum curvature of an elastically deformed layer. After constructing pseudo-three-dimensional trishear models of Laramide-style uplifts that grow self-similarly, we calculated the direction of minimum-curvature axes during the evolution of the fold. Our analysis of minimum-curvature axes in evolving folds suggests several important characteristics for fold-related joint sets: (1) joints that are neither parallel nor perpendicular to the fold axis may be induced by local fold-related strains; (2) at any time during folding, joint orientations may vary according to the structural position on a fold; (2) at any location on a fold, joint orientation may depend on when a joint forms during the evolution of the fold; and (4) joint patterns in trishear folds may vary with stratigraphic position. Natural folds that evolve along simple geometric pathways may develop fold-related joint sets, the orientation, dominance, abutting relationships, spacing, and continuity of which will vary systematically throughout the structure. This variation in joint-system architecture may reflect the history of fold growth.
机译:我们将沉积岩层视为弹性板,并假定节理的方向平行于层的最大瞬时拉伸,从而预测节理的方向。因为最大瞬时拉伸方向平行于曲面的最大曲率,所以我们假设关节将趋于平行于弹性变形层的最小曲率。在构建自相似增长的Laramide型隆起的拟三维三维剪切模型之后,我们计算了褶皱演化过程中最小曲率轴的方向。我们对演化褶皱中最小曲率轴的分析提出了与褶皱相关的关节组的几个重要特征:(1)与褶皱轴不平行或不垂直的关节可能是由局部褶皱相关的应变引起的; (2)在折叠过程中的任何时候,接头的方向可能会根据折叠结构的位置而有所不同; (2)在褶皱的任何位置,关节的朝向可能取决于褶皱演变过程中关节形成的时间; (4)三剪切褶皱中的节理可能随地层位置而变化。沿简单几何路径演化的自然褶皱可能会形成与褶皱有关的关节组,其方向,优势,邻接关系,间距和连续性将在整个结构中发生系统性变化。关节系统架构的这种变化可能反映了倍数增长的历史。

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