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Dispersion of deep-sea hydrothermal vent effluents and larvae by submesoscale and tidal currents

机译:亚中尺度和潮汐流对深海热液喷口废水和幼虫的扩散

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摘要

Deep-sea hydrothermal vents provide sources of geochemical materials that impact the global ocean heat and chemical budgets, and support complex biological communities. Vent effluents and larvae are dispersed and transported long distances by deep ocean currents, but these currents are largely undersampled and little is known about their variability. Submesoscale (0.1-10 km) currents are known to play an important role for the dispersion of biogeochemical materials in the ocean surface layer, but their impact for the dispersion in the deep ocean is unknown. Here, we use a series of nested regional oceanic numerical simulations with increasing resolution (from delta x = 6 km to delta x = 0.75 km) to investigate the structure and variability of highly-resolved deep currents over the Mid-Atlantic Ridge (MAR) and their role on the dispersion of the Lucky Strike hydrothermal vent effluents and larvae. We shed light on a submesoscale regime of oceanic turbulence over the MAR at 1500 m depth, contrasting with open-ocean - i.e., far from topographic features - regimes of turbulence, dominated by mesoscales.& para;& para;Impacts of submesoscale and tidal currents on larval dispersion and connectivity among vent populations are investigated by releasing neutrally buoyant Lagrangian particles at the Lucky Strike hydrothermal vent. Although the absolute dispersion is overall not sensitive to the model resolution, submesoscale currents are found to significantly increase both the horizontal and vertical relative dispersion of particles at O(1-10) km and O(1-10) days, resulting in an increased mixing of the cloud of particles. A fraction of particles are trapped in submesoscale coherent vortices, which enable transport over long time and distances. Tidal currents and internal tides do not significantly impact the horizontal relative dispersion. However, they roughly double the vertical dispersion. Specifically, particles undergo strong tidally-induced mixing close to rough topographic features, which allows them to rise up in the water column and to cross topographic obstacles.& para;& para;The mesoscale variability controls at first order the connectivity between hydrothermal sites and we do not have long enough simulations to conclude on the connectivity between the different MAR hydrothermal sites. However, our simulations suggest that the connectivity might be increased by submesoscale and tidal currents, which act to spread the cloud of particles and help them cross topographic barriers.
机译:深海热液喷口提供地球化学物质的来源,这些物质会影响全球海洋热量和化学物质的预算,并支持复杂的生物群落。排气孔和幼虫通过深海流分散并长距离运输,但这些流大部分采样不足,对其可变性知之甚少。亚尺度(0.1-10 km)的洋流对于生物地球化学物质在海洋表层中的扩散起着重要作用,但它们对深海中的扩散的影响尚不清楚。在这里,我们使用一系列分辨率提高的嵌套区域海洋数值模拟(从增量x = 6 km到增量x = 0.75 km)来研究大西洋中脊(MAR)上高分辨率高深流的结构和变异性以及它们在Lucky Strike热液喷口废水和幼虫中的分散作用。我们揭示了1500 m深度MAR上的亚中尺度海洋湍流状况,与中尺度主导的开阔海洋-即远非地形特征-湍流状况形成了鲜明对比。通过在Lucky Strike热液喷口处释放中性浮力的拉格朗日粒子,研究喷口种群之间幼虫分散和连通性的电流。尽管绝对色散总体上对模型分辨率不敏感,但发现亚中尺度电流会显着增加O(1-10)km和O(1-10)天时粒子的水平和垂直相对色散,从而导致增加粒子云的混合。一小部分粒子被困在亚中尺度的相干涡旋中,这使得能够进行长时间和远距离的传输。潮流和内部潮汐不会显着影响水平相对色散。但是,它们使垂直方向的色散大致翻倍。具体而言,颗粒经历了潮汐诱导的强烈混合,接近了粗糙的地形特征,这使它们可以在水柱中上升并越过地形障碍。我们没有足够长的模拟来得出不同MAR热液站点之间连通性的结论。但是,我们的模拟表明,亚中尺度和潮流可能会增加连通性,这会传播粒子云并帮助它们越过地形障碍。

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