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Three-dimensional hydrodynamic modelling of tidal flows interacting with aquaculture fish cages

机译:潮汐流与水产养殖鱼笼相互作用的三维流体动力学建模

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Three-dimensional, non-linear, non-hydrostatic simulations of rotating tidal flows interacting with aquaculture cages (represented as drag elements) at the geophysical scale are performed using an adaptive, finite volume fluid code "Gerris". Exploiting the Gerris grid structure, sub-metre scale resolution can be obtained even for the farm scale experiments, enabling examination of the impact of the cage on the imposed tidal flows. Passive tracers are used to try to quantify these cage impacts, representing either feed or faecal matter (with specified fall speeds), or other biogeochemical markers such as dissolved oxygen. Using a relatively simple drag formulation, we show that the model is able to reproduce laboratory observations. The farm scale simulations can also be "tuned" in a similar fashion, for example by comparison with observations of total drag force on such structures, or with field measurements of flow retardation by cages. Single and multi-scale cage experiments are then examined to explore the potential impacts of perturbed horizontal and vertical flows on material redistribution through and within the cages. Even with the relatively smooth forcing and drag formulation the experiments reveal a surprising level of complexity in terms of the perturbed flows and their impact on transporting and diffusing passive material. (C) 2020 Elsevier Ltd. All rights reserved.
机译:使用自适应的有限体积流体编码“Gerris”进行与地球养殖笼中的旋转潮汐流的三维,非线性,非静水压模拟与水产养殖笼相互作用(表示为地球种级)。利用Gerris栅格结构,即使是用于农业规模实验,也可以获得次仪表刻度分辨率,从而能够检查笼子对施加的潮汐流量的影响。被动示踪剂用于尝试量化这些笼子撞击,代表饲料或粪便物质(具有指定的秋季速度),或其他生物地良好的标记如溶解氧。使用相对简单的拖曳制定,我们表明该模型能够再现实验室观察。农场规模模拟也可以以类似的方式“调谐”,例如通过与这些结构上的总拖动的观察,或者通过笼子的流失延迟的场测量比较。然后检查单尺度和多尺度笼式实验,以探讨扰动水平和垂直流通过笼内的材料再分配的潜在影响。即使具有相对平稳的强制和拖动制剂,实验甚至就扰动流动的流量和它们对运输和扩散被动材料的影响揭示了令人惊讶的复杂程度。 (c)2020 elestvier有限公司保留所有权利。

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