Effects of Tidally Varying River Flow on Entrainment of Juvenile Salmon into Sutter and Steamboat Sloughs

Q3 Agricultural and Biological Sciences San Francisco Estuary and Watershed Science Pub Date : 2020-06-07 DOI:10.15447/SFEWS.2021V19ISS2ART4
J. Romine, R. W. Perry, P. Stumpner, A. Blake, J. R. Burau
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引用次数: 5

Abstract

Survival of juvenile salmonids in the Sacramento–San Joaquin Delta (Delta) varies by migration route, and thus the proportion of fish that use each route affects overall survival through the Delta. Understanding factors that drive routing at channel junctions along the Sacramento River is therefore critical to devising management strategies that maximize survival. Here, we examine entrainment of acoustically tagged juvenile Chinook Salmon into Sutter and Steamboat sloughs from the Sacramento River. Because these sloughs divert fish away from the downstream entrances of the Delta Cross Channel and Georgiana Slough (where fish access the low-survival region of the interior Delta), management actions to increase fish entrainment into Sutter and Steamboat sloughs are being investigated to increase through-Delta survival. Previous studies suggest that fish generally “go with the flow”—as net flow into a divergence increases, the proportion of fish that enter that divergence correspondingly increases. However, complex tidal hydrodynamics at sub-daily time-scales may be decoupled from net flow. Therefore, we modeled routing of acoustic tagged juvenile salmon as a function of tidally varying hydrodynamic data, which was collected using temporary gaging stations deployed between March and May of 2014. Our results indicate that discharge, the proportion of flow that entered the slough, and the rate of change of flow were good predictors of an individual’s probability of being entrained. In addition, interactions between discharge and the proportion of flow revealed a non-linear relationship between flow and entrainment probability. We found that the highest proportions of fish are likely to be entrained into Steamboat Slough and Sutter Slough on the ascending and descending limbs of the tidal cycle, when flow changes from positive to negative. Our findings characterize how patterns of entrainment vary with tidal flow fluctuations, providing information critical for understanding the potential effect of management actions (e.g., fish guidance structures) to modify routing probabilities at this location.
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潮汐变化的河流流量对鲑鱼幼鱼被卷入沙特和汽船的淤泥中的影响
在萨克拉门托-圣华金三角洲(三角洲),幼鲑的存活率因迁徙路线而异,因此,使用每条路线的鱼的比例影响整个三角洲的总体存活率。因此,了解在萨克拉门托河沿岸的水道交汇处驱动路线的因素对于设计最大限度地提高生存的管理策略至关重要。在这里,我们检查声标记幼年奇努克鲑鱼进入萨特和蒸汽船从萨克拉门托河的污泥夹带。由于这些烂泥将鱼类从三角洲跨海峡下游入口和乔治亚州烂泥(鱼类进入三角洲内部低存活率区域的地方)引开,因此正在研究增加鱼类进入萨特和蒸汽船烂泥的管理措施,以提高三角洲的存活率。先前的研究表明,鱼类通常“随波逐流”——随着流入分流的净流量增加,进入分流的鱼类比例也相应增加。然而,在亚日时间尺度上,复杂的潮汐流体动力学可能与净流量解耦。因此,我们将声学标记的幼年鲑鱼的路线建模为潮汐变化的水动力数据的函数,这些数据是在2014年3月至5月期间部署的临时测量站收集的。我们的研究结果表明,流量、进入污泥的流量比例和流量变化率是个体被夹带概率的良好预测指标。此外,流量与流量比例的相互作用揭示了流量与夹带概率之间的非线性关系。研究发现,当水流由正向负变化时,在潮汐循环的上升和下降段,鱼类可能被带入蒸汽船沼泽和萨特沼泽的比例最高。我们的研究结果描述了随潮汐波动而变化的捕获模式,为理解管理行动(例如,鱼类引导结构)对改变该位置路线概率的潜在影响提供了关键信息。
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来源期刊
San Francisco Estuary and Watershed Science
San Francisco Estuary and Watershed Science Environmental Science-Water Science and Technology
CiteScore
2.90
自引率
0.00%
发文量
24
审稿时长
24 weeks
期刊最新文献
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