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Flow Fields Inside Stocked Fish Cages and the Near Environment

机译:放养鱼笼内的流场和附近环境

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This study explores the average flow field inside and around stocked Atlantic salmon (Salmo salar L.) fish cages. Laboratory tests and field measurements were conducted to study flow patterns around and through fish cages and the effect offish on the water flow. Currents were measured around an empty and a stocked fish cage in a fjord to verify the results obtained from laboratory tests without fish and to study the effects of fish swimming in the cage. Fluorescein, a nontoxic, fluorescent dye, was released inside a stocked fish cage for visualization of three-dimensional flow patterns inside the cage. Atlantic salmon tend to form a torus shaped school and swim in a circular path, following the net during the daytime. Current measurements around an empty and a stocked fish cage show a strong influence of fish swimming in this circular pattern: while most of the oncoming water mass passes through the empty cage, significantly more water is pushed around the stocked fish cage. Dye experiments show that surface water inside stocked fish cages converges toward the center, where it sinks and spreads out of the cage at the depth of maximum biomass. In order to achieve a circular motion, fish must accelerate toward the center of the cage. This inward-directed force must be balanced by an outward force that pushes the water out of the cage, resulting in a low pressure area in the center of the rotational motion of the fish. Thus, water is pulled from above and below the fish swimming depth. Laboratory tests with empty cages agree well with field measurements around empty fish cages, and give a good starting point for further laboratory tests including the effect of fish-induced currents inside the cage to document the details of the flow patterns inside and adjacent to stocked fish cages. The results of such experiments can be used as benchmarks for numerical models to simulate the water flow in and around net pens, and model the oxygen supply and the spreading of wastes in the near wake of stocked fish farms.
机译:这项研究探索了放养大西洋鲑鱼(Salmo salar L.)鱼笼内部和周围的平均流场。进行了实验室测试和现场测量,以研究鱼笼周围和通过鱼笼的流动方式以及鱼对水流的影响。在峡湾的空的和放养的鱼笼周围测量水流,以验证无鱼的实验室测试结果,并研究鱼在笼中游泳的影响。荧光素(一种无毒的荧光染料)被放到一个放养的鱼笼内,以可视化笼内的三维流动模式。大西洋鲑鱼倾向于形成圆环形状的学校,并在白天沿着网状网游成环形。当前在空的和放养的鱼笼周围的测量结果显示,鱼以这种圆形模式游泳有很大的影响:虽然大多数迎面而来的水量通过空的笼子,但是大量的水却被推到放养的鱼笼周围。染料实验表明,放养鱼笼内的地表水向中心汇聚,在最大生物量的深度下沉并扩散出笼子。为了实现圆周运动,鱼必须向网箱中心加速。该向内的力必须与将水推出网箱的向外的力相平衡,从而在鱼的旋转运动的中心产生低压区域。因此,从鱼游泳深度的上方和下方抽水。空笼的实验室测试与空鱼笼周围的实地测量非常吻合,并为进一步的实验室测试提供了良好的起点,包括笼内鱼感生电流的影响,以记录放养鱼内部和附近鱼类的流型细节。笼子。这些实验的结果可以用作数值模型的基准,以模拟网围栏内和围网周围的水流,并模拟养鱼场附近的氧气供应和废物的扩散。

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