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Passive margin subduction and the dynamics of collisional orogenesis

机译:被动边缘俯冲与碰撞造山运动

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Continental passive margins are characterized by a wide variety of geometries and widths. Whether these variations have an influence on subsequent dynamics of orogenesis is unresolved. To investigate, a series of upper mantle numerical experiments were performed with systematically varied continental margin widths and geometries. Results show that the vertical geometry of subducting continental margin crust controls both crustal and mantle lithosphere deformation. On both scales, end-members can be identified. Namely, break-off versus delamination of continental mantle lithosphere and double vergence versus single vergence of crustal thrust fronts form as a direct result of passive margin geometry. We find that the subduction of upper crust to depths >100 km promotes lithospheric delamination and is facilitated by an extended passive margin. Modeled orogens show decreasing upper plate deformation with increasing margin width. These results suggest that along-strike deformational variation within orogens may develop due to precollision passive margin geometry.
机译:大陆被动边缘的特征是多种几何形状和宽度。这些变化是否会影响随后的造山动力学尚无定论。为了调查,对上地幔数值实验进行了系统地变化的大陆边缘宽度和几何形状。结果表明,俯冲大陆边缘地壳的垂直几何形状控制着地壳和地幔岩石圈的变形。在这两个尺度上,都可以确定最终成员。即,大陆幔岩石圈的折断与分层以及地壳逆冲锋面的双聚散与单聚散是被动边缘几何的直接结果。我们发现,上地壳俯冲到100 km以上的深度会促进岩石圈分层,并通过扩展的被动边缘来促进。模拟造山带的上板变形随着边界宽度的增加而减小。这些结果表明,由于碰撞前被动边缘的几何形状,造山带内部可能会发生沿走向的变形变化。

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