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Impact of bending related faulting on the seismic properties of the incoming oceanic plate offshore of Nicaragua

机译:弯曲相关断裂对尼加拉瓜海洋板近海地震特性的影响

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A seismic wide-angle and refraction experiment was conducted offshore of Nicaragua in the Middle American Trench to investigate the impact of bending-related normal faulting on the seismic properties of the oceanic lithosphere prior to subduction. On the basis of the reflectivity pattern of multichannel seismic reflection (MCS) data it has been suggested that bending-related faulting facilitates hydration and serpentinization of the incoming oceanic lithosphere. Seismic wide-angle and refraction data were collected along a transect which extends from the outer rise region not yet affected by subduction into the trench northwest of the Nicoya Peninsula, where multibeam bathymetric data show prominent normal faults on the seaward trench slope. A tomographic joint inversion of seismic refraction and wide-angle reflection data yield anomalously low seismic P wave velocities in the crust and uppermost mantle seaward of the trench axis. Crustal velocities are reduced by 0.2–0.5 km s?1 compared to normal mature oceanic crust. Seismic velocities of the uppermost mantle are 7.6–7.8 km s?1 and hence 5–7% lower than the typical velocity of mantle peridotite. These systematic changes in P wave velocity from the outer rise toward the trench axis indicate an evolutionary process in the subducting slab consistent with percolation of seawater through the faulted and fractured lithosphere and serpentinization of mantle peridotites. If hydration is indeed affecting the seismic properties of the mantle, serpentinization might be reaching 12–17% in the uppermost 3–4 km of the mantle, depending on the unknown degree of fracturing and its impact on the elastic properties of the subducting lithosphere.
机译:地震广角和折射实验是在中美洲沟槽中尼加拉瓜的海上进行,以研究弯曲相关的正常断层对俯冲前海洋岩石圈的地震性质的影响。基于多通道地震反射(MCS)数据的反射率模式,已经提出了弯曲相关的断层促进进入海洋岩石圈的水化和蛇形化。沿着横扫地层收集地震广角和折射数据,该横向延伸到尼科省半岛的沟槽西北部的俯冲延伸的外层区域延伸,其中多沟浴斜率显示出突出的正常断层。地震折射和广角反射数据的断层接头反转率在沟槽轴的地壳和最上面的地幔中产生异常低地震P波速度。与正常的海洋外壳相比,地壳速度减少了0.2-0.5 km s?1。最上面的地幔的地震速度为7.6-7.8 km s?1,从而低于Mantle Peridotite的典型速度5-7%。从外层朝向沟槽轴上的P波速度的这些系统变化指示底板板中的进化过程,它通过裂纹和裂缝的岩石圈和Mantle Peridotites的裂缝晶状体的渗透而一致。如果保湿性确实影响了地幔的地震性质,则锯齿化可能在地幔的最高3-4千米上达到12-17%,这取决于未知的压裂程度及其对岩屑的弹性性能的影响。

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