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Mantle hydration along outer-rise faults inferred from serpentinite permeability

机译:蛇纹岩渗透性推断外缘断层地幔水化

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摘要

Recent geophysical surveys indicate that hydration (serpentinization) of oceanic mantle is related to outer-rise faulting prior to subduction. The serpentinization of oceanic mantle influences the generation of intermediate-depth earthquakes and subduction water flux, thereby promoting arc volcanism. Since the chemical reactions that produce serpentinite are geologically rapid at low temperatures, the flux of water delivery to the reaction front appears to control the lateral extent of serpentinization. In this study, we measured the permeability of low-temperature serpentinites composed of lizardite and chrysotile, and calculated the lateral extent of serpentinization along an outer-rise fault based on Darcy’s law. The experimental results indicate that serpentinization extends to a region several hundred meters wide in the direction normal to the outer-rise fault in the uppermost oceanic mantle. We calculated the global water flux carried by serpentinized oceanic mantle ranging from 1.7 × 1011 to 2.4 × 1012 kg/year, which is comparable or even higher than the water flux of hydrated oceanic crust.
机译:最近的地球物理调查表明,洋地幔的水合作用(蛇形化)与俯冲前的外层断层有关。大洋地幔的蛇形化影响了中深度地震的产生和俯冲水通量,从而促进了弧形火山作用。由于产生蛇纹石的化学反应在低温下在地质上是快速的,因此水向反应前沿的输送通量似乎可以控制蛇纹石的横向范围。在这项研究中,我们测量了由蜥蜴石和温石棉组成的低温蛇纹岩的渗透率,并根据达西定律计算了沿外层断层的蛇纹岩化的横向范围。实验结果表明,蛇纹岩化在垂直于最上层海洋地幔外上升断层的方向上延伸了几百米宽。我们计算出蛇形化的海洋地幔带动的全球水通量范围为1.7×10 11 至2.4×10 12 kg /年,与水通量相当甚至更高。水合的海洋壳。

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