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A new Eulerian-Lagrangian agent method to model fish paths in a vertical slot fishway

机译:一种新的欧拉-拉格朗日代理方法,用于模拟垂直槽鱼道中的鱼径

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摘要

An individual-based model (IBM) to simulate the movement of a single fish through a vertical slot fishway has been developed. The turbulent water flow in the fishway was first obtained using CFD-software. Trajectories of live fish measured by Rodriguez et al, (2011) were superimposed on several different parameters characterizing the flow, such as the turbulent kinetic energy (TKE). The correlations between these hydrodynamic parameters and the measured trajectories were examined and TKE was identified as the single most important stimulus. To mimic positive rheotaxis, the mean velocity was adopted as a secondary agent. The new Lagrangian IBM-model was combined with the Eulerian CFD-model to an Eulerian-Lagrangian agent method. This ELAM approach was used to compute the trajectory of a virtual fish. The simulated trajectories were in good agreement with their measured counterparts in the same fishway. Both the preferred direct route and the alternative longer route through an active pool were faithfully reproduced. (C) 2015 Elsevier B.V. All rights reserved.
机译:已经开发了基于个人的模型(IBM),可以模拟单个鱼在垂直槽式鱼道中的运动。首先使用CFD软件获得鱼道中的湍流。 Rodriguez等人(2011)测量的活鱼轨迹叠加在表征水流的几个不同参数上,例如湍动能(TKE)。检查了这些流体动力学参数与测得的轨迹之间的相关性,并将TKE确定为唯一最重要的刺激。为了模拟正流变,采用平均速度作为辅助剂。新的Lagrangian IBM模型与Eulerian CFD模型结合在一起,成为Eulerian-Lagrangian代理方法。该ELAM方法用于计算虚拟鱼的轨迹。模拟的轨迹与它们在相同鱼道中测得的轨迹非常吻合。忠实地复制了通过活动池的首选直接路线和替代性更长路线。 (C)2015 Elsevier B.V.保留所有权利。

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