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Modeling Flow Through and Around a Net Panel Using Computational Fluid Dynamics

机译:使用计算流体动力学通过网板进行建模流动

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Flow through and around nets is computed using computational fluid dynamics implemented using FLUENT software. The presented study is focused on net panels with different angle of attack, but once the approach is validated on net panels, it should be applicable to 3D aquaculture net-pens. The approach is to model the net as a thin sheet of porous material with a pressure drop that is a function of velocity through the porous material. The objective is to find out what porous media model has the best agreement with measured data and how to assess the material constants for the porous media. The results show that a thin sheet of porous media with pressure drop proportional to velocity squared has the best agreement with measured data. Optimal comparisons were achieved when the proportionality coefficient for tangential flow was less than that for the normal direction.
机译:使用使用流利软件实现的计算流体动力学来计算流过和围绕网。所提出的研究专注于具有不同攻角的净面板,但一旦在网面板上验证了方法,它应该适用于3D水产养殖网笔。该方法是将净造型为薄的多孔材料片,压降是通过多孔材料的速度的函数。目的是找出多孔媒体模型与测量数据的最佳协议以及如何评估多孔介质的材料常数。结果表明,与速度平方成比例的压力下降的薄片多孔介质具有与测量数据的最佳协议。当切向流量的比例系数小于正常方向时,实现了最佳比较。

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