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首页> 外文期刊>Transactions of the American Fisheries Society >Migration Depths of Adult Spring and Summer Chinook Salmon in theLower Columbia and Snake Rivers in Relation to Dissolved GasSupersaturation
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Migration Depths of Adult Spring and Summer Chinook Salmon in theLower Columbia and Snake Rivers in Relation to Dissolved GasSupersaturation

机译:成年春夏奇努克鲑鱼在哥伦比亚河下游和斯内克河的迁移深度与溶解气体过饱和的关系

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High spill volume at dams can create supersaturated dissolved gas conditions that may have negative effects on fish. Water spilling over Columbia and Snake River dams during the spring and summer creates plumes with high dissolved gas that extend downstream of dam spillways and throughout reservoirs and creates gas-supersaturated conditions throughout the water column. During the spring and summer of 2000, 228 adult Chinook salmon Oncorhynchus tshawytscha were tagged at Bonneville Dam with archival radio data storage transmitters (RDSTs) that recorded depth and water temperature as the fish migrated through dams and reservoirs of the lower Columbia and Snake rivers. Swimming depths from 131 of the 228 adult spring and summer Chinook salmon tagged with RDSTs were used to estimate the potential for gas bubble formation given in-river dissolved gas concentrations and hydrostatic compensation. We found that adult spring and summer Chinook salmon spent a majority of the time at depths that would have provided adequate hydrostatic compensation for in-river dissolved gas conditions during this study, which were at or slightly below long-term averages. Adult spring and summer Chinook salmon spent a majority of their time at depths deeper than 2 m, interspersed with periods lasting minutes at depths shallower than 2 m. Statistical associations were weak between the percent and duration of time fish occupied depths near the surface and dissolved gas concentrations, suggesting a lack of behavioral avoidance. Collectively, these data suggest little potential for negative effects of gas supersaturation on adult spring and summer Chinook salmon under average river conditions, despite the fact that fish tissues were probably supersaturated with dissolved gases. However, additional research over a broader range of dissolved gas conditions is needed to confirm that short, but frequent, exposure to conditions conducive to gas bubble formation does not affect survival and reproductive potential.
机译:大坝的溢漏量高会产生过饱和的溶解气体,可能会对鱼类产生不利影响。在春季和夏季,水溢出哥伦比亚河和斯内克河大坝,形成具有高溶解性气体的羽流,这些羽流在大坝溢洪道的下游延伸到整个储层,并在整个水柱中形成过饱和气体。在2000年春季和夏季,在邦纳维尔大坝为228只成年的奇努克鲑鱼Oncorhynchus tshawytscha贴上了档案无线电数据存储发射器(RDST),记录了鱼在哥伦比亚河下游和斯纳克河的水坝和水库中迁移时的深度和水温。在228个成年的奇努克鲑鱼中,用RDST标记的228个成年春夏鲑中的131个游泳深度被用于估算给定河内溶解气体浓度和静水压力补偿后形成气泡的可能性。我们发现,成年的春努马和奇努克鲑鱼大部分时间都花在了可以为河内溶解气体条件提供足够的静水压力补偿的深度上,该深度等于或略低于长期平均值。春季和夏季成年的奇努克鲑鱼大部分时间都花在2m以上的深度,而零星的时间则在2m以下的深度持续数分钟。鱼类在水面附近所占深度的百分比和持续时间与溶解气体浓度之间的统计关联性较弱,表明缺乏避免行为的方法。总的来说,这些数据表明,在平均河流条件下,气体过饱和度对成年春季和夏季的奇努克鲑鱼产生负面影响的可能性很小,尽管事实是鱼组织中可能富含溶解性气体。但是,需要对更广泛的溶解气体条件进行更多研究,以确认短暂但频繁的暴露于有利于气泡形成的条件不会影响存活率和繁殖潜能。

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