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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Subduction adjacent to deep continental roots: Enhanced negative pressure in the mantle wedge, mountain building and continental motion
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Subduction adjacent to deep continental roots: Enhanced negative pressure in the mantle wedge, mountain building and continental motion

机译:在大陆深部根部附近俯冲:地幔楔,山地建筑和大陆运动中的负压增强

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摘要

Subduction near to a deep continental root is modeled with finite elements. The root restricts asthenospheric corner flow. which increases mantle-wedge suction. The suction pulls the continental root toward the subduction zone. simultaneously promoting trenchward continental motion and compressive tectonics in the lithosphere between the root and the subduction zone. In a 2-D model with a root that extends to 250 km depth and lies 300 km from the mantle-wedge corner. we find two-fold increase in mantle-wedge suction and nearly a four-fold increase in continental compression (to 5 x 10~(12) N/m) compared to a rootless reference model. In 3-D modeling. we find that distance to the subduction zone is more important than root width (in subduction strike direction) or reasonable variations in sub-lithospheric viscosity structure. with the root-enhanced suction effects diminishing rapidly as the wedge corner-root distance increases beyond 400 km, When finite-width roots are wider than the distance to the mantle-wedge corner and closer than 400 km. compression of the continent between the root and the subduction zone is >50% that found in the infinite-width root.
机译:用有限元模拟深大陆根附近的俯冲。根部限制了软流圈的角流。这会增加地幔楔吸力。吸力将大陆根拉向俯冲带。同时在根部和俯冲带之间的岩石圈中促进了向海的大陆运动和压缩构造。在二维模型中,其根部延伸到250 km的深度,并且距地幔楔角300 km。与无根参考模型相比,我们发现地幔楔吸力增加了两倍,而大陆压缩增加了近四倍(至5 x 10〜(12)N / m)。在3D建模中。我们发现,到俯冲带的距离比根部宽度(在俯冲走向上)或地下岩石圈粘度结构的合理变化更为重要。当楔形根部根部距离增加到超过400 km时,根部增强的吸力作用迅速减小;当有限宽度的根部比距地幔楔形角的距离宽且小于400 km时。根与俯冲带之间大陆的压缩比无限宽根中的压缩大50%以上。

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