首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Trench-parallel spreading ridge subduction and its consequences for the geological evolution of the overriding plate: Insights from analogue models and comparison with the Neogene subduction beneath Patagonia
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Trench-parallel spreading ridge subduction and its consequences for the geological evolution of the overriding plate: Insights from analogue models and comparison with the Neogene subduction beneath Patagonia

机译:沟渠平行的展开脊架俯冲及其对电倒板地质演化的影响:模拟模型的见解与巴塔哥尼亚下的新生俯冲比较

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摘要

A series of 3-D asthenospheric-scale analogue models have been conducted in the laboratory in order to simulate the arrival of a spreading ridge at the trench and understand its effect on plate kinematics, slab geometry, and on the deformation of the overriding plate. These models are made of a two-layered linearly viscous system simulating the lithosphere and asthenosphere. We reproduce the progressive decrease in thickness of the oceanic lithosphere at the trench. We measure plate kinematics, slab geometry and upper plate deformation. Our experiments reveal that the subduction of a thinning plate beneath a freely moving overriding continent favors a decrease of the subduction velocity and an increase of the oceanic slab dip. When the upper plate motion is imposed by lateral boundary conditions, the evolution of the subducting plate geometry largely differs depending on the velocity of the overriding plate: the larger its trenchward velocity, the smaller the superficial dip of the oceanic slab. A slab flattening episode may occur resulting from the combined effect of the subduction of an increasingly thinner plate and the trenchward motion of a fast overriding plate. Slab flattening would be marked by an increase of the distance between the trench and the volcanic arc in nature. This phenomenon may explain the reported Neogene eastward motion of the volcanic arc in the Southern Patagonia that occurred prior to the subduction of the Chile Ridge.
机译:在实验室中进行了一系列三维软流圈尺度模拟模型,以模拟扩张脊到达海沟,并了解其对板块运动学、板块几何和覆盖板块变形的影响。这些模型由两层线性粘性系统组成,模拟岩石圈和软流圈。我们重现了海沟处海洋岩石圈厚度的逐渐减小。我们测量板块运动学、板块几何和上板块变形。我们的实验表明,在一个自由移动的覆盖大陆下,一个变薄的板块俯冲有利于俯冲速度的降低和大洋板块倾角的增加。当上板块运动受到侧向边界条件的影响时,俯冲板块几何结构的演化在很大程度上取决于上覆板块的速度:其向沟槽方向的速度越大,大洋板块的表面倾角越小。越来越薄的板块俯冲和快速覆盖板块的沟槽运动的综合效应可能会导致板块变平。板坯变平的标志是沟渠和火山弧之间的距离增加。这一现象可以解释所报道的巴塔哥尼亚南部火山弧在智利海脊俯冲之前的新近纪向东运动。

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