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首页> 外文期刊>North American Journal of Fisheries Management >Fall Chinook Salmon Spawning Activity versus Daylight and Flow in theTailrace of a Large Hydroelectric Dam
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Fall Chinook Salmon Spawning Activity versus Daylight and Flow in theTailrace of a Large Hydroelectric Dam

机译:大型水力发电大坝尾部的秋努努鲑鱼产卵活动与日光和流量的关系

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摘要

We deployed an acoustic system during the spawning season for fall Chinook salmon Oncorhynchus tshawytscha in 2001 to determine whether fall Chinook salmon spawning activity in a hydroelectric dam tailrace area was affected by daylight or river flow. Our study design allocated sampling effort nearly equally between hours of darkness and hours of daylight throughout each 24-h period. The acoustic system recorded sounds of fall Chinook salmon spawning activity in two index areas downstream of Wanapum Dam on the Columbia River in Washington State. One index area was a deepwater spawning site located in 9-11 m of water. The other index area was a moderate-depth midchannel bar, where water depths ranged from 2.5 to 6 m. We defined the rate of spawning activity in digs per minute. Fall Chinook salmon spawning activity rates in the Wanapum Dam tailrace were influenced by both daylight and river discharge, which had a pronounced nonlinear effect on spawning activity rates. To account for nonlinearity, a generalized additive model was used to characterize the combined effects of river flow and daylight. The final model also suggested that both flow and daylight influenced spawning activity. Spawning activity occurred during both daylight and darkness, significantly more activity occurring during daylight in both index areas. Spawning activity was generally highest at project discharges between 1,700 and 2,266 m super(3)/s in both spawning areas; spawning activity diminished as discharge increased from 3,400 to 4,250 m super(3)/s. We concluded that fall Chinook salmon spawning activity in this regulated discharge environment was affected more by flow (and velocity) than by daylight.
机译:我们在2001年秋季奇努克鲑鱼Oncorhynchus tshawytscha产卵季节期间部署了一个音响系统,以确定水电大坝尾水区的秋季奇努克鲑鱼产卵活动是否受到日光或河水的影响。我们的研究设计在每个24小时周期的黑暗小时和白天之间几乎均等地分配了采样工作量。声学系统记录了华盛顿州哥伦比亚河Wanapum大坝下游两个指标区域的秋努克鲑鱼产卵活动的声音。一个指标区域是位于9-11 m水中的深水产卵场。另一个指标区域是中等深度的河道中段,水深范围为2.5至6 m。我们以每分钟挖掘的次数来定义产卵活动的速率。瓦纳普姆水坝尾种族的秋努努人鲑产卵活动率受日光和河流流量的影响,这对产卵活动率具有明显的非线性影响。为了解决非线性问题,使用了通用的加性模型来表征河流流量和日光的综合影响。最终模型还表明,流量和日光都会影响产卵活动。产卵活动在白天和黑暗期间均发生,两个指标区域的白天活动明显增加。在两个产卵区的项目排放量在1,700至2,266 m super(3)/ s之间时,产卵活动通常最高。随着排放量从3,400增加到4,250 m super(3)/ s,产卵活动减少。我们得出的结论是,在这种规定的排放环境下,秋季奇努克鲑鱼的产卵活动受流量(和速度)的影响大于受日光的影响。

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