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Ocean Transport Pathways to a World Heritage Fringing Coral Reef: Ningaloo Reef, Western Australia

机译:通往世界遗产边缘珊瑚礁的海洋运输途径:西澳大利亚州宁格鲁礁

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摘要

A Lagrangian particle tracking model driven by a regional ocean circulation model was used to investigate the seasonally varying connectivity patterns within the shelf circulation surrounding the 300 km long Ningaloo Reef in Western Australia (WA) during 2009–2010. Forward-in-time simulations revealed that surface water was transported equatorward and offshore in summer due to the upwelling-favorable winds. In winter, however, water was transported polewards down the WA coast due to the seasonally strong Leeuwin Current. Using backward-in-time simulations, the subsurface transport pathways revealed two main source regions of shelf water reaching Ningaloo Reef: (1) a year-round source to the northeast in the upper 100 m of water column; and (2) during the summer, an additional source offshore and to the west of Ningaloo in depths between ~30 and ~150 m. Transient wind-driven coastal upwelling, onshore geostrophic transport and stirring by offshore eddies were identified as the important mechanisms influencing the source water origins. The identification of these highly time-dependent transport pathways and source water locations is an essential step towards quantifying how key material (e.g., nutrients, larvae, contaminants, etc.) is exchanged between Ningaloo Reef and the surrounding shelf ocean, and how this is mechanistically coupled to the complex ocean dynamics in this region.
机译:使用拉格朗日粒子追踪模型(由区域海洋环流模型驱动)调查了2009-2010年西澳大利亚州(WA)长300公里的Ningaloo Reef周围架子循环内季节性变化的连通性模式。实时模拟显示,由于有利于上升的风,在夏季,地表水向赤道和近海输送。但是在冬季,由于季节性强烈的吕温洋流,水沿西海岸沿极地输送。利用逆时模拟,地下运输路径揭示了到达宁格鲁礁的架子水的两个主要水源区域:(1)一年四季的水源,向东北方向位于水柱上方100 m; (2)夏季,在Ningaloo的西面和海上,深度在〜30至〜150 m之间。瞬态风力驱动的海岸上升流,陆上地转和陆上涡流的搅动被认为是影响水源的重要机制。识别这些高度依赖时间的运输途径和水源位置是量化Ningaloo Reef与周围架子海洋之间如何交换关键物质(例如营养物,幼体,污染物等)的必不可少的步骤。机械耦合到该地区复杂的海洋动力学。

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