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Hydrodynamic Drivers of Juvenile-Salmon Out-Migration in the Sacramento River: Secondary Circulation

机译:萨克拉曼多河中鲑鱼和鲑鱼迁徙的水动力驱动因素:二次循环

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The entrances to the two lowest-survival migration routes for juvenile Chinook salmon in the tidal Sacramento River are located in the outside of a river bend where secondary circulation occurs. Three-dimensional simulations are conducted, in the Eulerian and Lagrangian frame, to understand tidal and secondary circulation effects on salmon migration route selection within this river reach. Fish were assumed to behave as neutrally-buoyant particles. Findings show that simulated particle entrainment rates into these routes tend to be larger than those expected from flow entrainment calculations alone, particularly during ebb tides, due to several factors. First, the fraction of the flow diverted to these routes tends to be higher in the shallowest layers, as a result of the secondary circulation that develops in the main river. Second, and supporting previous work done at the study site, the secondary circulation acting upstream also causes the surface-biased salmon distribution to be skewed toward the outside of the bend as they approach the entrance to the migration routes. As a result of these effects, the risk of particles being entrained is maximal near the surface, remaining higher than 50% during the course of a tidal cycle. (C) 2018 American Society of Civil Engineers.
机译:潮汐萨克拉曼多河中奇努克鲑鱼的两条存活率最低的迁徙路线的入口位于发生二次循环的河道外侧。在欧拉和拉格朗日框架中进行了三维模拟,以了解潮汐和二次循环对这条河段内鲑鱼迁移路线选择的影响。假定鱼类表现为中性浮力颗粒。研究结果表明,由于多种因素,进入这些路径的模拟颗粒夹带率往往比单独的流量夹带计算所预期的要大,尤其是在退潮期间。首先,由于在主要河流中形成了二次循环,因此在最浅层中,转向这些路径的流量比例往往较高。其次,为支持研究现场的先前工作,上游的二次循环还导致表面偏向的鲑鱼分布在接近迁移路线的入口时偏向弯道的外部。这些影响的结果是,在表面附近夹带颗粒的风险最大,在潮汐循环过程中保持高于50%。 (C)2018美国土木工程师学会。

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