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首页> 外文期刊>Frontiers in Marine Science >The NE Lau Basin: Widespread and Abundant Hydrothermal Venting in the Back-Arc Region Behind a Superfast Subduction Zone
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The NE Lau Basin: Widespread and Abundant Hydrothermal Venting in the Back-Arc Region Behind a Superfast Subduction Zone

机译:NE Lau盆地:超快俯冲带后方的弧形区域广泛且丰富的热液喷口

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The distribution of hydrothermal venting reveals important clues about the presence of magma in submarine settings. The NE Lau Basin in the southwest Pacific Ocean is a complex back-arc region of widespread hydrothermal activity. It includes spreading ridges, arc volcanoes, and intra-plate volcanoes that provide a perhaps unique laboratory for studying interactions between hydrothermal activity and magma sources. Since 2004, multiple cruises have explored the water column of the NE Lau Basin. Here we use these data to identify and characterize 43 active hydrothermal sites by means of optical, temperature, and chemical tracers in plumes discharged by each site. Seventeen of 20 prominent volcanic edifices dispersed among the Tofua arc, spreading ridges, and plate interiors host active hydrothermal sites. Fourteen apparently discharge high-temperature fluids, including a multi-year submarine eruption at the intra-plate volcano W Mata. The 430 km of spreading ridges host 31 active sites, one an eruption event in 2008. Our data show that the relationship between site spatial density (sites/100 km of ridge crest) and ridge spreading rate (8-42 mm/yr) in the NE Lau Basin follows the same linear trend as previously established for the faster-spreading (40-90 mm/yr) ridges in the central Lau Basin. The lower site density in the NE Lau Basin compared to the central Lau is consistent with recent plate reconstructions that more than halved earlier estimates of ~50-100 mm/yr spreading rates in the NE Lau Basin. Combined data from the spreading ridges throughout the entire Lau back-arc basin demonstrates that hydrothermal sites, normalized to spreading rate, are ~10× more common than expected based on existing mid-ocean ridge data. This increase documents the ability of meticulous exploration, using both turbidity and chemical sensors, to more fully describe the true hydrothermal population of a spreading ridge, compared to conventional techniques. It further reveals that the Lau back-arc basin, benefiting from both ridge and arc magma sources, supports an exceptionally high population of ridge and intra-plate hydrothermal sites.
机译:热液排放的分布揭示了有关水下环境中岩浆存在的重要线索。西南太平洋的东北流域盆地是一个复杂的弧后区域,热液活动广泛。它包括散布的山脊,弧形火山和板内火山,它们为研究热液活动与岩浆源之间的相互作用提供了一个也许独特的实验室。自2004年以来,多次巡游探索了NE Lau盆地的水柱。在这里,我们使用这些数据通过光学,温度和化学示踪剂在每个站点排放的羽流中识别和表征43个活跃的热液站点。分布在Tofua弧,蔓延的山脊和板块内部的20个著名火山大厦中有17个拥有活跃的热液站。十四个明显地排出了高温流体,包括板内火山W Mata的多年海底喷发。 430 km的扩张山脊拥有31个活动点,2008年发生了一次喷发事件。我们的数据显示,该地区的空间密度(站点/ 100 km的山脊顶)与山脊的扩张速度(8-42 mm / yr)之间存在关系NE Lau盆地的线性趋势与先前为Lau盆地中部快速扩张的(40-90 mm / yr)山脊建立的线性趋势相同。 NE Lau盆地的中部密度低于Lau的中部,这与最近的板块重建一致,早期的NE Lau盆地中〜50-100 mm / yr扩散速度的估计值减少了一半以上。来自整个劳尔后弧盆地扩散脊的综合数据表明,根据扩散速率标准化的热液站点比基于现有中洋脊数据的预期要普遍约10倍。与常规技术相比,这种增加证明了使用浊度和化学传感器进行精细勘探的能力,可以更充分地描述扩散脊的真实水热种群。它进一步揭示,得益于山脊和弧岩浆源,劳背弧盆地支持着大量的山脊和板内热液场。

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