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Deflection of mantle flow beneath subducting slabs and the origin of subslab anisotropy

机译:俯冲板块下地幔流的偏转及底板各向异性的起源

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摘要

Global compilations of subslab shear wave splitting parameters show a mix of trench-parallel and trench-perpendicular fast directions that often directly contradict predictions from two-dimensional models of slab-entrained flow. Here we show that subslab anisotropy is consistent with three-dimensional geodynamic models that feature the interaction between subducting slabs and regional mantle flow. Each model represents a specific region for which high-quality source-side shear wave splitting data are available. We compare the distribution of finite strain in the models with shear wave splitting observations, showing that both trench-parallel and trench-perpendicular fast directions can be explained by deflection of regional mantle flow around or beneath subducted slabs. Subslab maximum elongation directions calculated from our models depend on a combination of geometry factors (such as slab dip angle and maximum depth), mechanical parameters (such as decoupling between the slab and the subjacent mantle), and the orientation and magnitude of the regional mantle flow.
机译:板坯剪切波分裂参数的全球汇编显示出,沟槽平行和沟槽垂直快速方向的混合常常直接与二维板坯夹带流动模型的预测相矛盾。在这里,我们显示了板坯各向异性与三维地球动力学模型是一致的,该模型以俯冲板块与区域地幔流之间的相互作用为特征。每个模型代表一个特定的区域,对于该区域可获得高质量的源侧剪切波分裂数据。我们将模型中的有限应变分布与剪切波分裂观测进行了比较,结果表明,平行于沟槽和垂直于沟槽的快速方向都可以通过俯冲板片周围或下方的区域地幔流的偏转来解释。根据我们的模型计算出的下板最大伸长方向取决于几何因素(例如板倾角和最大深度),机械参数(例如板与下地幔之间的解耦)以及区域地幔的方向和大小的组合流。

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