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Growth-strata geometry in fault-propagation folds: a case study from the Gafsa basin, southern Tunisian Atlas

机译:断层传播褶皱中的生长地层几何:以突尼斯阿特拉斯南部加夫萨盆地为例

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摘要

The structural and sedimentological study of fault-propagation folds in Southern Tunisia highlights a special geometry of the growth strata (strata deposited simultaneously with the formation or growth of a fold). This distinct geometry is visible in the uppermost growth-strata beds and consists of one flank with unconformity as opposed to the other flank with perfect conformity. This geometry can be explained by the mechanism of fault-propagation folding, with asymmetrical flank dips and hinge migration kinematics. This kinematics was originally predicted by the fault-propagation fold model, which facilitates the study of this special geometry in a narrow domain of sedimentation-to-shortening ratios. A plot projection provides a generalisation of the results of all types of fault-propagation folds by revealing the expected geometry of the growth strata. This study constitutes one of the most complete examples of kinematic model validation on a field scale.
机译:突尼斯南部断层传播褶皱的结构和沉积学研究突出了生长地层的特殊几何形状(地层与褶皱的形成或生长同时沉积)。这种最独特的几何形状在最上层的生长层中可见,并且由一个不整合的侧面构成,而另一个侧面则具有完美的整合。可以通过断层传播折叠机制,不对称的侧倾和铰链运动学来解释这种几何形状。这种运动学最初是由断层传播褶皱模型预测的,该模型有助于在狭窄的沉降与缩短比范围内研究这种特殊的几何形状。曲线投影通过揭示生长层的预期几何形状,提供了所有类型的断层传播褶皱结果的概括。这项研究构成了运动学模型验证的最完整实例之一。

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