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Tectonic erosion of the Peruvian forearc, Lima Basin, by subduction and Nazca Ridge collision

机译:俯冲和纳斯卡岭碰撞对秘鲁前臂利马盆地的构造侵蚀

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Subsidence of Lima Basin, part of the Peruvian forearc, is controlled by tectonic erosion by the subducting Nazca plate. Multichannel seismic reflection data coupled with age and paleowater depth constraints derived from Ocean Drilling Program (ODP) coring now allow the rates of erosion to be reconstructed through time. In trenchward locations the forearc has experienced limited recent relative uplift (700-850 m) likely due to preferential basal erosion under the center of Lima Basin. Long-term subsidence driven by basal tectonic erosion dominates and is fastest closest to the trench. Since 47 Ma (Eocene) up to 148 km of the plate margin have been lost at an average rate of up to 3.1 km myr~(-1). Appoximately 110 km of that total appears to be lost since 11 Ma, implying much faster average rates of trench retreat (10 km myr~(-1)) since collision of the Nazca Ridge with the Lima Basin at 11 Ma. Although there is no clear subsidence event at ODP Site 679 during the time at which Nazca Ridge was subducting beneath this part of the forearc (4-11 Ma), the more trenchward ODP Sites 682 and 688 show significant deepening after 11 Ma indicating that subduction of the ridge accelerates tectonic erosion. Long-term rates of crustal erosion in the region of Lima Basin are greater than estimates of regional arc magmatic productivity, implying that such margins are net sinks of continental crust.
机译:秘鲁前臂的一部分利马盆地的沉降受俯冲的纳斯卡板块的构造侵蚀控制。现在,多通道地震反射数据加上从海洋钻探计划(ODP)取心得到的年龄和古水深度约束,可以随时间重建侵蚀速率。在前缘地区,前臂最近的相对隆起(700-850 m)受到限制,这可能是由于利马盆地中心下方的优先基底侵蚀所致。由基底构造侵蚀驱动的长期沉降占主导地位,并且最接近海沟。自47 Ma(始新世)以来,高达148 km的板块边缘已经消失,平均速率高达3.1 km myr〜(-1)。自11 Ma以来,总共损失了约110 km,这表明自纳斯卡岭与11 Ma的利马盆地碰撞以来,海沟撤退的平均速度更快(10 km myr〜(-1))。尽管在纳斯卡海脊在前臂的该部分下方俯冲时(4-11 Ma),ODP 679处没有明显的沉降事件,但在11 Ma之后,更具开挖性的ODP站点682和688显示出明显的加深,表明俯冲ridge的形成加速了构造侵蚀。利马盆地地区的长期地壳侵蚀速率大于对区域弧岩浆生产力的估计,这意味着这些边缘是大陆壳的净汇。

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