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Effects of change in slab geometry on the mantle flow and slab fabric in Southern Peru

机译:秘鲁南部平板几何形状变化对地幔流动和平板织物的影响

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摘要

The effects of complex slab geometries on the surrounding mantle flow field are still poorly understood. Here we combine shear wave velocity structure with Rayleigh wave phase anisotropy to examine these effects in southern Peru, where the slab changes its geometry from steep to flat. To the south, where the slab subducts steeply, we find trench-parallel anisotropy beneath the active volcanic arc that we attribute to the mantle wedge and/or upper portions of the subducting plate. Farther north, beneath the easternmost corner of the flat slab, we observe a pronounced low-velocity anomaly. This anomaly is caused either by the presence of volatiles and/or flux melting that could result from southward directed, volatile-rich subslab mantle flow or by increased temperature and/or decompression melting due to small-scale vertical flow. We also find evidence for mantle flow through the tear north of the subducting Nazca Ridge. Finally, we observe anisotropy patterns associated with the fast velocity anomalies that reveal along strike variations in the slab's internal deformation. The change in slab geometry from steep to flat contorts the subducting plate south of the Nazca Ridge causing an alteration of the slab petrofabric. In contrast, the torn slab to the north still preserves the primary (fossilized) petrofabric first established shortly after plate formation.
机译:复杂的平板几何形状对周围地幔流场的影响仍然知之甚少。在这里,我们将剪切波速度结构与瑞利波相各向异性相结合,以检验秘鲁南部的这些影响,那里的平板将其几何形状从陡峭变为平坦。在平板俯冲陡峭的南部,我们在活动火山弧下方发现了与沟槽平行的各向异性,这归因于地幔楔和/或俯冲板的上部。在更北边的平板最东角下方,我们观察到明显的低速异常。这种异常是由于可能存在挥发物和/或助熔剂熔化而引起的,这些挥发物和/或助熔剂熔化可能是由于向南定向的,富含挥发物的地下平板地幔流,或者是由于小规模的垂直流导致了温度升高和/或减压熔化所致。我们还发现有证据表明地幔流过俯冲的纳斯卡岭以北的裂隙。最后,我们观察到与快速速度异常相关的各向异性模式,这些异常模式沿板坯内部变形的走向变化揭示。平板几何形状从陡峭到平坦的变化扭曲了纳斯卡山脊以南的俯冲板,导致平板岩性织物发生了变化。相比之下,向北撕裂的板仍然保留着最初的(化石)石油织物,它在板块形成后不久就建立了。

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