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首页> 外文期刊>Marine ecology progress series >Krill aggregation in the St. Lawrence system, and supply of krill to the whale feeding grounds in the estuary from the gulf
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Krill aggregation in the St. Lawrence system, and supply of krill to the whale feeding grounds in the estuary from the gulf

机译:磷虾在圣劳伦斯系统中聚集,并从海湾向河口的鲸鱼饲养场供应磷虾

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摘要

Persistent high-density krill aggregations make the St. Lawrence Estuary and the Gulf of St. Lawrence important feeding-grounds for large marine mammals. To estimate the effects of the circulation on the seasonal krill distribution, a krill biomass-concentration equation with active vertical migration was coupled to a 3D regional sea ice-ocean circulation model. The results show recurrent spatial patterns of aggregation and advection controlled by the circulation and a high sensitivity to the parameters of the biological model. The time spent in the surface layer is crucial for the retention of organisms in the estuary. The simulated krill aggregation areas are associated with 3 processes (tidal interactions with bathymetry, wind-driven upwelling and mean circulation). Zooplank-ton generally aggregate near the edges of the Laurentian Channel and other secondary channels, at locations that are consistent with the sparse synoptic information on the distributions of large marine mammals in the gulf. The simulations also indicate that changes in the seasonal circulation significantly affect the krill distribution within the gulf through gyre intensities, the seasonal thermocline and the strength of the estuarine circulation. Finally, the variability of zooplankton transport to the estuary from the gulf appears to be controlled by processes acting on the circulation mode at the mouth of the estuary and estuarine pumping of the krill layer towards the head of the Laurentian Channel. The simulated krill biomass imported into the estuary changed by a factor of 2 over the 3 simulated years.
机译:持久的高密度磷虾聚集体使圣劳伦斯河口和圣劳伦斯湾成为大型海洋哺乳动物的重要觅食地。为了估计环流对季节性磷虾分布的影响,将具有活跃垂直迁移的磷虾生物量浓度方程式与3D区域海冰海洋环流模型耦合。结果表明,循环控制的聚集和对流的周期性空间格局以及对生物模型参数的高度敏感性。花在表层的时间对于将生物保留在河口至关重要。模拟的磷虾聚集区域与3个过程相关联(潮汐与测深,风驱动上升流和平均环流)。浮游动物通常聚集在劳伦森海峡和其他次要海峡的边缘附近,其位置与关于海湾中大型海洋哺乳动物分布的稀疏天气信息一致。模拟还表明,季节性环流的变化会通过回旋强度,季节性温跃线和河口环流强度显着影响海湾内的磷虾分布。最后,浮游生物从海湾到河口的变化似乎是由作用于河口口处的循环模式和磷虾层向劳伦斯海峡头的河口抽水作用控制的。在3个模拟年份中,输入到河口的模拟磷虾生物量变化了2倍。

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