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Modelling how the physical scale of experimental tanks affects salmon growth performance

机译:模拟实验舱的物理规模如何影响鲑鱼生长性能

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In this study, we explored the potential of using mathematical models for studying the effects of physical scale of production units on the growth performance of Atlantic salmon (Salmo salar L.). Atlantic salmon are typically produced in large sea cages, but for ethical, practical and economic reasons, most research experiments are performed in tanks or cages of comparatively small volumes, and it is therefore important to consider the representability of small-scale experiments with regard to growth performance. Based on an existing model, we developed a model for estimating the effects of changes in physical scale on salmon growth performance. The model was verified using experimental data obtained from a laboratory study featuring growth experiments in tanks of different sizes, and found able to predict the effects of increasing tank scale. We also used the model in a series of virtual experiment studying how sensitive the scaling effect is towards how (i.e. changing only radius, only depth or both) the volume is scaled. The results from the virtual studies indicate that larger production volumes lead to improved feed ingestion and growth, provided the increase in volume is achieved through horizontal or horizontal plus vertical expansion of the units, but also implies that the nature of the scaling effects depends on other factors such as tank cross section.
机译:在这项研究中,我们探讨了使用数学模型来研究生产单位的物理规模对大西洋三文鱼(Salmo Salar L.)的生长性能影响的潜力。大西洋鲑鱼通常在大海笼中生产,但由于道德,实用性和经济原因,大多数研究实验都是在相对较小的卷的坦克或笼子中进行的,因此重要的是考虑小规模实验的可见性成长性能。基于现有模型,我们开发了一种估算物理规模变化对三文鱼生长性能影响的模型。使用从不同尺寸的坦克中的实验室研究获得的实验室研究获得的实验数据验证了该模型,并且发现能够预测增加坦克秤的影响。我们还在一系列虚拟实验中使用该模型研究缩放效果如何达到如何(即只有半径,只有深度或两者)尺寸缩放的敏感性。虚拟研究结果表明,较大的产量导致进料摄入和生长提高,只要通过单位的水平或水平加上垂直扩展实现的体积增加,而且意味着缩放效应的性质取决于其他坦克横截面等因素。

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