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Flow trajectories in analogue viscous orogenic wedges: Insights on natural orogens

机译:模拟粘性造山楔中的流动轨迹:自然造山带的见解

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Flow trajectories in viscous orogenic wedges with depth-dependent rheology are modelled with an experimental thermomechanical apparatus and paraffin as the analogue material. Two different foreland-dipping backstop configurations (backstop dips of 60 degrees and 30 degrees, respectively) are used under constant convergence velocity (bulk deformation rate 5 x 10(-6)s(-1)). Results show that shortening is accommodated at depth by diverging shear zones (pro- and retrowedge-directed), compensated at shallower levels by prowedge-directed shearing occurring in the pro-side of the axial region, whose efficiency increases with backstop dip. The resulting shear sense distribution allows the deep parts of the wedge axial region to be progressively exhumed along an extrusion channel in the retrowedge region. Exhumation is favoured by increasing the dip angle of the backstop. The ductile flow path at depth constitutes the main factor controlling shear sense distributions and metamorphic recurrences in the axial region of mature orogenic wedges.
机译:使用实验性热机械装置,以石蜡为模拟材料,对粘性造山楔中与深度相关的流变轨迹进行建模。在恒定收敛速度下(体变形率5 x 10(-6)s(-1)),使用了两种不同的前陆浸渍逆止构造(分别为60度和30度的逆止倾角)。结果表明,通过在剪切区域(前楔和后楔导向)的发散在深度上进行缩短,而在轴向区域的前侧发生的前楔导向剪切则在较浅的水平上进行了补偿,其效率随着后倾角的增加而增加。所得的剪切方向分布允许楔形轴向区域的较深部分沿着后楔区域中的挤压通道逐渐被挖出。增加止挡的倾角有利于挖掘尸体。深度的延性流径是控制成熟造山楔轴向区域剪切力感测分布和变质递归的主要因素。

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