首页> 外文期刊>Journal of structural geology >Transpressional deformations at lateral boundaries of propagating thrust-sheets: the example of the Meuse Valley Recess within the Ardennes Variscan fold-and-thrust belt (N France-S Belgium)
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Transpressional deformations at lateral boundaries of propagating thrust-sheets: the example of the Meuse Valley Recess within the Ardennes Variscan fold-and-thrust belt (N France-S Belgium)

机译:传播推力板横向边界处的压迫变形:以阿登瓦里斯坎褶皱冲断带内的默兹河谷凹陷为例(N France-S Belgium)

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The 3D kinematics of the fold-thrust structures within the Meuse Valley Recess (MVR) (Ardennes Variscan thrust belt, N France-S Belgium) have been investigated using an integrated approach combining geological mapping, cross-section analyses and studies of magnetic fabrics and paleomagnetic data at a total of 52 sites distributed within the study area. Fold-thrust geometries, strain distribution and thrust-sheet rotational patterns lead to a conceptual structural model illustrating natural deformation processes at lateral boundaries of propagating thrust-sheets. The MVR is shown to result from distributed transpressional deformation of the Ardennes Basal Thrust hanging wall above a buried lateral/oblique ramp inherited from the Lower-Middle Devonian extensional tectonics of the sedimentary wedge. This deep lateral/oblique discontinuity basically controls the thickness and basal friction of the Ardennes thrust wedge, thus resulting in contrasting thrust propagation west and east of the MVR. Out-of-plane strain within the transfer zone includes some varying components of normal-to-bedding shear and lateral shortening depending on the proximity with the buried lateral discontinuity. A gradient of lateral shortening is evidenced towards this discontinuity, thus acting as a buttress zone. We emphasize the high friction conditions prevailing along the lateral borders of the thrust sheets, which potentially result in drag effects during foreland-directed thrust propagation. Such additional shear strain is suggested to be accommodated by late pervasive thrust-sheet rotation and lateral broadening of the deformed zone subsequent to oblique folding close to the lateral/oblique boundary.
机译:结合了地质制图,横断面分析和磁性织物研究的综合方法,研究了默兹河谷凹陷(MVR)(阿登尼斯瓦里斯坎冲断带,法国北部-比利时)内褶皱-冲断构造的3D运动学。研究区域内共有52个站点的古磁数据。褶皱-冲断的几何形状,应变分布和逆冲薄片的旋转模式导致了一个概念性的结构模型,该模型说明了在传播的逆冲薄片的横向边界处的自然变形过程。 MVR被证明是由沉积楔的下-中泥盆纪伸展构造继承的埋藏的侧向/倾斜坡道之上的Ardennes基础推力悬挂壁的分布压变形引起的。这种深的横向/斜向不连续基本上控制了Ardennes推力楔的厚度和基底摩擦,从而导致MVR向西和向东的推力传播形成对比。取决于与掩埋的横向不连续性的接近程度,转移区内的平面外应变包括法向顺层剪切和横向缩短的一些变化分量。证明横向缩短的梯度朝向该不连续性,因此充当支撑区。我们强调沿止推板的侧向边界普遍存在的高摩擦条件,这可能会导致前陆定向推力传播过程中的阻力效应。这种附加的剪切应变被认为是通过在斜向折叠接近侧向/斜向边界之后晚些时候普遍地进行的推力板旋转和变形区域的侧向展宽来解决的。

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