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首页> 外文期刊>Deep-sea research.Part I.Oceanographic research papers >Modelling of physical drivers of a large feeding aggregation of killer whales (Orcinus orca) in the western Great Australian Bight, Australia
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Modelling of physical drivers of a large feeding aggregation of killer whales (Orcinus orca) in the western Great Australian Bight, Australia

机译:澳大利亚西部大澳大利亚伟大的澳大利亚杀手鲸(Orcinus Orca)的大型饲养聚集体的造型

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摘要

Every year 100 killer whales accumulate on the continental slope near Bremer Bay in the western Great Australian Bight from late austral spring to early autumn (January?April), which can be regarded as a natural wonder. For unknown reasons, the whales tend to feed in the same confined region over a seafloor plateau near the head of the Hood Canyon, where the total water depth is -800?1000 m. The hypothesis behind this work is that the killer-whale aggregation is the signature of a localized marine food web originating from flow-induced upwelling and concentration of benthic particulate organic matter (POM). To test this hypothesis a hydrodynamic model is applied to analyse the pathways of virtual suspended particles released near the seafloor in three large submarine canyons that exist in the region. Here we show that, due to its shape and positioning on the continental slope, the Hood Canyon operates to funnel significantly more benthic particles onto the ambient continental slope than the adjacent Bremer Canyon and the Whale Canyon. Moreover, findings suggest that smaller-scale topographic undulations within the Hood Canyon are the cause of this slope upwelling of POM. This transport mechanism of POM may explain the ecological uniqueness of the region.
机译:每年& 100次杀手鲸在西部大澳大利亚春天到澳大利亚春季到初秋(1月份)的大陆澳大利亚的大陆坡上积累了大陆坡,可以被视为一种自然的奇迹。出于未知的原因,鲸鱼倾向于在罩峡谷的头部附近的海底平台上喂食在海底高原上,总水深是-800?1000米。这项工作背后的假设是杀手 - 鲸聚集是源自流动诱导的升高和浓度的底颗粒有机物质(POM)的局部海洋食品网的签名。为了测试该假设,应用流体动力学模型来分析在该区域中存在的三个大潜艇峡谷附近释放的虚拟悬浮颗粒的途径。在这里,我们表明,由于其在大陆坡上的形状和定位,引擎盖峡谷的漏斗在漏斗中显着更加底粒颗粒,而不是相邻的乌贼峡谷和鲸峡峡谷。此外,调查结果表明,引擎盖峡谷内的较小尺度的地形起伏是POM对POM的坡度的原因。 POM的这种运输机制可以解释该地区的生态唯一性。

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