Dynamics of Near-Bottom Currents in Cold-Water Coral and Sponge Areas at Valdivia Bank and Ewing Seamount, Southeast Atlantic

IF 3.4 2区 地球科学 Q1 OCEANOGRAPHY Journal of Geophysical Research-Oceans Pub Date : 2025-01-05 DOI:10.1029/2024JC021667
Christian Mohn, Franziska U. Schwarzkopf, Patricia Jiménez García, Covadonga Orejas, Veerle A. I. Huvenne, Mia Schumacher, Irene Pérez-Rodríguez, Roberto Sarralde Vizuete, Luis J. López-Abellán, Andrew C. Dale, Colin Devey, Jørgen L. S. Hansen, Eva Friis Møller, Arne Biastoch
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Abstract

This study investigates near-bottom currents and physical processes from simulations with the hydrodynamic model ROMS-AGRIF at two seamounts of the northeast Walvis Ridge to obtain valuable insights about drivers of observed occurrences of benthic suspension feeders (cnidarians and sponges) in this data-poor area. The spatial resolution in each model area was increased across two levels of nested grids from 1,500 m to 500 m resolution with 32 stretched terrain-following (s-) layers in the vertical with high resolution close to the bottom. The parent grids receive initial and boundary conditions from the basin-scale model INALT20 and from solutions of the OTIS inverse tidal model. The model topography is based on GEBCO data with local refinements from multi-beam data collected during different surveys in 2008, 2009, and 2010. Increasing model resolution is an important advancement for precisely evaluating the intrinsic dynamics within challenging rough terrain. We examined how near-bottom currents vary over space and time and investigated potential links between observed Cnidarian and Porifera occurrences and ranges of physical variables and processes. We identified a close link between physical processes and species distributions and suggested that physical processes such as kinetic energy dissipation and internal wave dynamics may be considered in future research as proxies of food supply to benthic suspension feeders. Such mechanistic variables may also be used to supplement more traditional descriptors such as water mass and terrain properties in species distribution models, thus enhancing our ability to predict the occurrence of benthic communities characterized by cnidarians and sponges.

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大西洋东南部瓦尔迪维亚海岸和尤因海山冷水珊瑚和海绵区近底流动态
本研究利用流体动力学模型ROMS-AGRIF对沃尔维斯岭东北部两座海底山的近底流和物理过程进行了模拟,以获得在这一数据匮乏地区观测到的底栖悬浮食性动物(刺胞动物和海绵动物)发生的驱动因素的有价值的见解。每个模型区域的空间分辨率在两层嵌套网格上从1500 m增加到500 m,垂直方向上有32个拉伸地形跟踪层,接近底部的分辨率很高。母网格从流域尺度模型INALT20和OTIS逆潮模型的解中获得初始条件和边界条件。模型地形基于GEBCO数据,并对2008年、2009年和2010年不同调查期间收集的多波束数据进行局部细化。提高模型分辨率是在具有挑战性的崎岖地形中精确评估内在动力学的重要进展。我们研究了近海底洋流如何随空间和时间变化,并研究了观察到的刺胞虫和多孔虫的发生与物理变量和过程的范围之间的潜在联系。我们发现了物理过程与物种分布之间的密切联系,并建议在未来的研究中,可以考虑将动能耗散和内波动力学等物理过程作为底栖悬浮食性动物食物供应的代理。这些机制变量也可以用来补充物种分布模型中更传统的描述符,如水体质量和地形特性,从而提高我们预测以刺胞动物和海绵为特征的底栖生物群落发生的能力。
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来源期刊
Journal of Geophysical Research-Oceans
Journal of Geophysical Research-Oceans Earth and Planetary Sciences-Oceanography
CiteScore
7.00
自引率
13.90%
发文量
429
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