智利近海塔尔塔尔、科皮亚波和伊基克热点海脊及周围大洋板块的挠曲-密度联合建模

Geosphere Pub Date : 2024-07-03 DOI:10.1130/ges02733.1
A. Maksymowicz, E. Contreras‐Reyes, Luis E. Lara
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摘要

这项研究以重力和测深数据为基础,采用新颖的二维挠曲-密度联合建模方法,研究了智利北部近海塔尔塔尔、科皮亚波和伊基克热点海脊周围大洋纳斯卡板块的物理特性。该区域位于智利海沟以西,塔尔塔海脊和科皮亚波海脊与大陆边缘相撞。研究结果表明,不同尺度密度结构的变化是解释观测到的重力信号的一个关键因素,在岩石圈挠曲中发挥着重要作用,因此在这一环境中纳斯卡板块的弹性特性也是如此。这些结果可被解释为热点板块弱化过程、岩浆底板化以及地壳和上地幔断裂和/或水合作用的空间和时间异质性的证据。这些过程可能与后期(二次)火山活动的岩浆上升通道有关,并影响海洋板块的机械分割。后者对于解释大洋纳斯卡板块和南美洲板块之间活跃的地震接触至关重要。
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Joint flexural-density modeling of the Taltal, Copiapó, and Iquique hotspot ridges and the surrounding oceanic plate, offshore Chile
Based on gravity and bathymetric data and using a novel two-dimensional joint flexural-density modeling approach, this work studies the physical properties of the oceanic Nazca plate around the Taltal, Copiapó, and Iquique hotspot ridges offshore northern Chile. The area is located westward of the Chilean Trench where the Taltal and Copiapó Ridges collide with the continental margin. The results show that the variability in density structure at different scales is a key factor in explaining the observed gravity signal, playing an important role in the lithospheric flexure and hence the elastic properties of the Nazca plate in this setting. The results can be interpreted as evidence of spatial and temporal heterogeneities in the plate-weakening process at the hotspots, magmatic underplating, and crustal and upper mantle fracturing and/or hydration. These processes might be relevant for the ascent of magma pathways of later (secondary) volcanism and influence the mechanical segmentation of the oceanic plate. The latter is critical in explaining the active seismogenic contact between the oceanic Nazca and overriding South America plates.
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