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首页> 外文期刊>Geochemistry, geophysics, geosystems >Paleomagnetic constraints on the tectonic evolution of the Costa Rican subduction zone: New results from sedimentary successions of IODP drill sites from the Cocos Ridge
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Paleomagnetic constraints on the tectonic evolution of the Costa Rican subduction zone: New results from sedimentary successions of IODP drill sites from the Cocos Ridge

机译:哥斯达黎加俯冲带构造演化的古地磁约束:来自科科斯山脊的IODP钻探场沉积相继的新结果

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The near-flat subduction of the Cocos Ridge (CR) along the Middle American Trench (MAT) plays a pivotal role in governing the geodynamic evolution of the central American convergent margin. Elucidating the onset of its subduction is essential to understand the tectonic evolution and seismogenesis of the Costa Rican convergent margin, a typical erosive convergent margin and modern example of a flat-slab subduction. Initial subduction of the CR has been previously investigated by examining upper plate deformation that was inferred to have resulted from the initial CR subduction. However, little attention has been paid to the extensive sedimentary archives on the CR that could hold important clues to the initial CR subduction. Drilling on the CR during IODP Expedition 344 discovered a pronounced sedimentary hiatus at Site U1381. Here we present paleomagnetic and rock magnetic results of the Cenozoic sedimentary sequences at this site that bracket the hiatus between ca. 9.61 and 1.52 Ma. We also examine the areal extent, timing, and geologic significance of the hiatus by analyzing sedimentary records from five other ODP/IODP sites on CR and Cocos plate. The analyses show that the hiatus appears to be regional and the presence/absence of the sedimentary hiatus at different locations on CR implies a link to the onset of CR shallow subduction, as a result of either bottom current erosion or CR buckling upon its initial collision at the MAT. Records directly from CR thus provide a new window to unraveling the geodynamic evolution of the central American margin.
机译:沿中美洲海沟(MAT)沿Cocos Ridge(CR)的近俯冲作用在控制中美洲会聚边缘的地球动力学演化中起着关键作用。阐明其俯冲作用的开始对于理解哥斯达黎加会聚边缘的构造演化和地震成因,典型的侵蚀性会聚边缘以及平板俯冲的现代实例至关重要。先前已经通过检查推断为初始CR俯冲导致的上板变形研究了CR的初始俯冲。但是,对CR上广泛的沉积档案很少关注,这些档案可以为CR初始俯冲提供重要线索。在IODP远征344期间在CR上进行钻探时,在U1381站点发现了明显的沉积裂隙。在这里,我们介绍了这个地点的新生代沉积序列的古磁和岩石磁结果,这些结果将ca之间的裂隙括起来。 9.61和1.52 Ma。我们还通过分析CR和Cocos板上其他五个ODP / IODP站点的沉积记录来检查该裂隙的面积,时间和地质意义。分析表明,该裂隙似乎是区域性的,CR上不同位置的沉积裂隙的存在/不存在暗示了CR浅层俯冲的发生的一个联系,这是由于底部电流侵蚀或CR初次碰撞时CR屈曲的结果。在MAT。因此,直接来自CR的记录为揭示中美洲边缘的地球动力学演变提供了新的窗口。

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