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首页> 外文期刊>Journal of Ecohydraulics >A Lagrangian particle-tracking approach to modelling larval drift in rivers
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A Lagrangian particle-tracking approach to modelling larval drift in rivers

机译:拉格朗日粒子跟踪方法,以建模河流幼虫漂移

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摘要

The migration of larval fish from spawning to rearing habitat in rivers is not well understood. This paper describes a methodology to predict larval drift using a Lagrangian particle-tracking (LPT) model with passive and active behavioural components loosely coupled to a quasi-three-dimensional hydraulic model. In the absence of measured larval drift, a heuristic approach is presented for the larval drift of two species of interest, white sturgeon (Acipenser transmontanus) and burbot (Lota lota), in the Kootenai River, Idaho. Previous studies found that many fish species prefer certain vertical zones within the water column; sturgeon tend to be found near the bottom and burbot close to the water surface. Limiting the vertical movement of larvae is incorporated into the active component of the LPT model. The results illustrate a pattern of drift where secondary flow in meander bends and other zones of flow curvature redistributes particles toward the outside of the bend for surface drifters and toward the inside of the bend for bottom drifters. This pattern periodically reinforces the intersection of drifting larvae with channel margins in meander bends. In the absence of measured larval drift data, the model provides a tool for hypothesis testing and a guide to both field and laboratory experiments to further define the role of active behaviour in drifting larvae.
机译:幼虫鱼从产卵到河流养殖的迁移并不顺利。本文介绍了一种使用带有拉格朗日粒子跟踪(LPT)模型的方法来预测幼虫漂移,其具有松散地耦合到准三维液压模型的被动和有源行为组分。在没有测量的幼虫漂移的情况下,提出了一种启发式方法,用于在kootenai河,爱达荷州河岸的两种兴趣,白鲟鱼(acipenser transontanus)和burbot(lota lota)的幼虫漂移。以前的研究发现,许多鱼类更喜欢水柱内的某些垂直区;鲟鱼倾向于在底部附近找到,靠近水面的腹部。限制幼虫的垂直运动被掺入LPT模型的活性组分中。结果说明了曲折的次流的偏移和流动曲率的其他区域的漂移图案,其流动曲率的区域朝向表面漂移器的弯曲的外部重新分配颗粒,并且朝向底部漂移器的弯曲的内部。该图案周期性地加强了曲面与蜿蜒弯管的通道边缘的交叉点。在没有测量的幼虫漂移数据的情况下,该模型提供了假设检测的工具,以及对场和实验室实验的指南,以进一步确定活性行为在漂移幼虫中的作用。

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