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Ecohydrodynamics of Cold-Water Coral Reefs: A Case Study of the Mingulay Reef Complex (Western Scotland)

机译:冷水珊瑚礁的生态流体力学:以Mingulay礁群为例(西苏格兰)

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摘要

Ecohydrodynamics investigates the hydrodynamic constraints on ecosystems across different temporal and spatial scales. Ecohydrodynamics play a pivotal role in the structure and functioning of marine ecosystems, however the lack of integrated complex flow models for deep-water ecosystems beyond the coastal zone prevents further synthesis in these settings. We present a hydrodynamic model for one of Earth's most biologically diverse deep-water ecosystems, cold-water coral reefs. The Mingulay Reef Complex (western Scotland) is an inshore seascape of cold-water coral reefs formed by the scleractinian coral Lophelia pertusa. We applied single-image edge detection and composite front maps using satellite remote sensing, to detect oceanographic fronts and peaks of chlorophyll a values that likely affect food supply to corals and other suspension-feeding fauna. We also present a high resolution 3D ocean model to incorporate salient aspects of the regional and local oceanography. Model validation using in situ current speed, direction and sea elevation data confirmed the model's realistic representation of spatial and temporal aspects of circulation at the reef complex including a tidally driven current regime, eddies, and downwelling phenomena. This novel combination of 3D hydrodynamic modelling and remote sensing in deep-water ecosystems improves our understanding of the temporal and spatial scales of ecological processes occurring in marine systems. The modelled information has been integrated into a 3D GIS, providing a user interface for visualization and interrogation of results that allows wider ecological application of the model and that can provide valuable input for marine biodiversity and conservation applications.
机译:生态水动力学研究了跨不同时空尺度对生态系统的水动力约束。生态流体动力学在海洋生态系统的结构和功能中起着举足轻重的作用,但是,缺乏沿海地区以外的深水生态系统的综合复杂流模型,阻碍了这些环境的进一步综合。我们为地球上生物多样性最丰富的深水生态系统之一即冷水珊瑚礁提供了一个流体动力学模型。 Mingulay礁复合体(苏格兰西部)是由巩膜珊瑚Lophelia pertusa形成的冷水珊瑚礁的近海海景。我们使用卫星遥感技术应用了单图像边缘检测和合成前图,以检测海洋学前沿和叶绿素a值峰值,这些值可能会影响珊瑚和其他以悬浮饲料为食的动物的食物供应。我们还提出了高分辨率3D海洋模型,以结合区域和本地海洋学的重要方面。使用原位当前速度,方向和海高数据进行的模型验证,证实了该模型在礁综合体上的时空环流的现实表示,包括潮汐驱动的流态,涡流和下沉现象。深水生态系统中3D流体动力学建模与遥感的这种新颖结合,使我们对海洋系统中发生的生态过程的时空尺度有了更深入的了解。建模的信息已集成到3D GIS中,为结果的可视化和询问提供了用户界面,该界面允许对模型进行更广泛的生态应用,并可以为海洋生物多样性和保护应用提供有价值的输入。

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