Tan Junjun, Liu Zhenbiao, Wang Yu, Wang Yuanyang, Ke Senfan, Shi Xiaotao
Hubei International Science and Technology Cooperation Base of Fish Passage, China Three Gorges University, Yichang 443002, China.
College of Hydraulic and Environmental Engineering, China Three Gorges University, Yichang 443002, China.
Animals (Basel). 2022 Jul 4;12(13):1725. doi: 10.3390/ani12131725.
An understanding of fish movement behavior in response to flow field variables is important for exploring the hydrodynamic strategies of fish in fish passages. In this paper, bighead carps were taken as an example. The fish movement behavior response to water flow field information by means of estimating the energetic expenditure using an IBM approach in an experimental fishway was investigated. Fish swimming velocity, drag force, and energy expenditure were analyzed in varied flow conditions related to hydraulic variables, including velocity (V), turbulent kinetic energy (TKE), and strain rate (SR). The result indicated that the fish will require more energy in high TKE zones. This study provides a reference for optimizing the design of fish passages and fisheries management. This method can be applied to assess the efficiency of fish bypass structures and conduct fish survival studies.
了解鱼类对水流场变量的运动行为对于探索鱼类在鱼道中的水动力策略至关重要。本文以鳙鱼为例,在实验鱼道中采用基于个体建模(IBM)的方法,通过估计能量消耗来研究鱼类对水流场信息的运动行为响应。分析了与水力变量相关的不同水流条件下鱼类的游泳速度、阻力和能量消耗,这些水力变量包括流速(V)、湍动能(TKE)和应变率(SR)。结果表明,鱼类在高湍动能区域需要更多能量。本研究为优化鱼道设计和渔业管理提供了参考。该方法可用于评估鱼类旁路结构的效率并开展鱼类生存研究。