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马里亚纳和安第斯俯冲系统中的海沟平行流与地震各向异性

Trench-parallel flow and seismic anisotropy in the Mariana and Andean subduction systems.

作者信息

Kneller Erik A, van Keken Peter E

机构信息

Department of Geological Sciences, University of Michigan, Ann Arbor, Michigan 48109, USA.

出版信息

Nature. 2007 Dec 20;450(7173):1222-5. doi: 10.1038/nature06429.

Abstract

Shear-wave splitting measurements above the mantle wedge of the Mariana and southern Andean subduction zones show trench-parallel seismically fast directions close to the trench and abrupt rotations to trench-perpendicular anisotropy in the back arc. These patterns of seismic anisotropy may be caused by three-dimensional flow associated with along-strike variations in slab geometry. The Mariana and Andean subduction systems are associated with the largest along-strike variations of slab geometry observed on Earth and are ideal for testing the link between slab geometry and solid-state creep processes in the mantle. Here we show, with fully three-dimensional non-newtonian subduction zone models, that the strong curvature of the Mariana slab and the transition to shallow slab dip in the Southern Andes give rise to strong trench-parallel stretching in the warm-arc and warm-back-arc mantle and to abrupt rotations in stretching directions that are accompanied by strong trench-parallel stretching. These models show that the patterns of shear-wave splitting observed in the Mariana and southern Andean systems may be caused by significant three-dimensional flow induced by along-strike variations in slab geometry.

摘要

在马里亚纳和安第斯山脉南部俯冲带地幔楔上方进行的剪切波分裂测量显示,靠近海沟处地震波快波方向与海沟平行,而后弧区域则突然转变为与海沟垂直的各向异性。这种地震各向异性模式可能是由与板块几何形状沿走向变化相关的三维流动引起的。马里亚纳和安第斯俯冲系统与地球上观测到的最大板块几何形状沿走向变化有关,是测试板块几何形状与地幔中固态蠕变过程之间联系的理想对象。在此,我们通过全三维非牛顿俯冲带模型表明,马里亚纳板块的强烈曲率以及安第斯山脉南部板块倾角向浅部的转变,在暖弧和暖后弧地幔中产生了强烈的与海沟平行的拉伸,并导致拉伸方向的突然转变,同时伴有强烈的与海沟平行的拉伸。这些模型表明,在马里亚纳和安第斯山脉南部系统中观测到的剪切波分裂模式可能是由板块几何形状沿走向变化引起的显著三维流动造成的。

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