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American eel state of buoyancy and barotrauma susceptibility associated with hydroturbine passage

机译:与水轮机通过相关的美国鳗鱼的浮力和气压伤易感性

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American eel are likely to encounter and pass through hydropower turbines, particularly during the downstream spawning migration, where exposure to stressors can potentially lead to injuries and mortality. Previous research has recovered dead eels downstream of hydropower facilities and, for some fish, injuries were easily attributed to blade strike; however, others showed no external signs of injury suggesting that other stressors, such as rapid decompression may be a potential source of mortality. For this research, yellow– and silver-phase American eel were held and allowed to acclimate to 172?kPa (absolute pressure) in hyper/hypobaric hydro-chambers for about 1?d. After acclimation, the state of buoyancy was determined prior to exposure to a rapid decompression simulating pressures encountered during hydroturbine passage. Fish were then examined for signs of barotrauma. Eel did not attain a state of neutral buoyancy but rather maintained negative buoyancy suggesting that eels, and possibly other benthic species, likely maintain a state of negative buoyancy to facilitate occupancy on or near the substrate. Additionally, eel were found to be resilient to rapid decompression, displaying no instantaneous mortality and minimal injuries, suggesting that barotrauma is not likely a major concern for American eel passing downstream through hydroturbines.
机译:美洲鳗很可能会遇到并通过水力涡轮机,特别是在下游产卵移徙期间,在那里暴露于压力源下有可能导致受伤和死亡。先前的研究已经恢复了水力发电设施下游的死鳗鱼,对于一些鱼类,很容易将其伤害归因于叶片撞击。但是,其他人没有显示出外部损伤迹象,这表明其他压力源,例如快速减压可能是潜在的死亡原因。在这项研究中,黄相和银相美国鳗鱼被保持并使其在高压/低压水室中适应172?kPa(绝对压力)约1?d。适应后,在暴露于模拟水轮机通过过程中遇到的快速减压之前,确定浮力状态。然后检查鱼的气压伤痕迹。鳗鱼没有达到中性浮力状态,而是保持负浮力状态,这表明鳗鱼以及可能的其他底栖物种可能保持负浮力状态,以促进在基质上或附近的居住。另外,发现鳗鱼对快速减压具有弹性,没有显示瞬时死亡和最小程度的伤害,这表明气压伤不是美国鳗鱼通过水轮机向下游传递的主要问题。

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