Volcanic crustal structure of the western Hikurangi Plateau (New Zealand) from marine seismic reflection imaging

Geosphere Pub Date : 2024-04-25 DOI:10.1130/ges02744.1
Andrew C. Gase, N. Bangs, H. V. Van Avendonk, Dan Bassett, S. Henrys, R. Arai, G. Fujie, Philip M. Barnes, S. Kodaira, D. Barker, D. Okaya
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Abstract

Seamounts and basaltic basement can influence deformation and mass fluxes within subduction zones. We examined seamounts and volcanic units across the western Hikurangi Plateau, near the Hikurangi subduction margin, New Zealand, with seismic reflection images. Volcanism at the Hikurangi Plateau occurred in at least three phases that we attribute to (1) Early Cretaceous large igneous province formation, the top of which is marked by laterally continuous and dipping wedges of reflections that we interpret as lava flows; (2) Late Cretaceous seamounts and volcaniclastics that erupted onto the crust of the Hikurangi Plateau and make up the majority of seamount volume and basement relief; and (3) late-stage, Pliocene volcanics that erupted through and adjacent to Cretaceous seamounts and younger sediments of the north-central Hikurangi Plateau. The Pliocene volcanoes do not appear to be strongly welded to the plateau basement and may be petit spot volcanoes that are related to the displacement and accumulation of hydrous transition zone melts. Large seamounts and volcaniclastic units are evenly distributed across most of the Hikurangi Plateau near the Hikurangi margin but are absent from the Pegasus Basin. Although faults are imaged throughout the basement of the Pegasus Basin, contemporary normal faulting of the Hikurangi Plateau is uncommon, except for a zone of Quaternary normal faults near the Pliocene volcanics. These trends indicate that the Hikurangi megathrust may be more influenced by volcanic structures in the north and central Hikurangi margin, where plateau rifting and voluminous seamount eruptions have more substantially overprinted the original Early Cretaceous basement.
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从海洋地震反射成像看新西兰希库兰吉高原西部的火山地壳结构
海山和玄武岩基底可影响俯冲带内的变形和质量通量。我们利用地震反射图像研究了新西兰希库兰芝俯冲边缘附近希库兰芝高原西部的海山和火山岩。Hikurangi 高原的火山活动至少经历了三个阶段,我们将其归结为:(1)早白垩世大型火成岩群的形成,其顶部有横向连续和倾斜的楔形反射,我们将其解释为熔岩流;(2) 晚白垩世的海山和火山碎屑岩喷发到希库兰吉高原的地壳上,占海山体积和基底地形的大部分;以及 (3) 晚期的上新世火山喷发穿过并邻近白垩世海山和希库兰吉高原中北部较年轻的沉积物。这些上新世火山似乎没有与高原基底牢固地焊接在一起,可能是与含水过渡带熔体的位移和堆积有关的小点火山。大型海山和火山碎屑岩单元均匀地分布在彦库朗伊边缘附近的彦库朗伊高原的大部分地区,但飞马座盆地却没有。虽然飞马座盆地的整个基底都有断层,但除了上新世火山岩附近的第四纪正断层带之外,希库兰芝高原的当代正断层并不常见。这些趋势表明,希库兰吉大地壳可能更多地受到希库兰吉边缘北部和中部火山结构的影响,那里的高原断裂和大量海山喷发对原始的早白垩世基底造成了更大的覆盖。
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