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Subduction of trench-fill sediments beneath an accretionary wedge: Insights from sandbox analogue experiments

机译:俯冲楔形楔下的沟槽填充沉积物:沙箱模拟实验的见解

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Sandy trench-fill sediments at accretionary margins are commonly scraped off at the frontal wedge and rarely subducted to the depth of high-pressure (HP) metamorphism. However, some ancient exhumed accretionary complexes are associated with high-pressure–low-temperature (HP-LT) metamorphic rocks, such as psammitic schists, which are derived from sandy trench-fill sediments. This study used sandbox analogue experiments to investigate the role of seafloor topography in the transport of trench-fill sediments to depth during subduction. We conducted two different types of experiments, with or without a rigid topographic high (representing a seamount). We used an undeformable backstop that was unfixed to the side wall of the apparatus to allow a seamount to be subducted beneath the overriding plate. In experiments without a seamount, progressive thickening of the accretionary wedge pushed the backstop down, leading to a stepping down of the décollement, narrowing of the subduction channel, and underplating of the wedge with subducting sediment. In contrast, in experiments with a topographic high, the subduction of the topographic high raised the backstop, leading to a stepping up of the décollement and widening of the subduction channel. These results suggest that the subduction of stiff topographic relief beneath an inflexible overriding plate might enable trench-fill sediments to be deeply subducted and to become the protoliths of HP-LT metamorphic rocks.
机译:砂质沟槽填充沉积物在额楔上通常刮掉,并且很少将高压(HP)变质的深度化。然而,一些古老的膨胀的膨胀复合物与高压 - 低温(HP-LT)变质岩有关,例如Psammitic Sc​​hists,其来自砂质沟槽填充沉积物。本研究采用沙箱模拟实验来研究海底地形在俯冲期间沟槽填充沉积物运输中的作用。我们进行了两种不同类型的实验,有或没有刚性地形高(代表海山)。我们使用了一个可变的止挡,其未固定到装置的侧壁上,以允许海山在推翻板下方被压制。在没有Seamount的实验中,渐进式楔的渐进式增厚推动了止回阀,导致沿着悬坐的俯冲通道的踩下,以及楔形与桥接沉积物的底部膨胀。相反,在具有地形高的实验中,地形高的俯冲凸起的止动件,导致俯冲和扩大俯冲通道的踩踏。这些结果表明,处于不灵活的推翻板下面的硬质地形释放的俯卧地可能使沟槽填充沉积物深层化,并成为HP-LT变质岩石的促果。

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