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Indirect Effects of Impoundment on Migrating Fish: Temperature Gradients in Fish Ladders Slow Dam Passage by Adult Chinook Salmon and Steelhead

机译:蓄水对鱼类迁徙的间接影响:成年的奇努克鲑鱼和Steel鱼在梯子中缓慢的水坝通道中的温度梯度

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摘要

Thermal layering in reservoirs upstream from hydroelectric dams can create temperature gradients in fishways used by upstream migrating adults. In the Snake River, Washington, federally-protected adult salmonids (Oncorhynchus spp.) often encounter relatively cool water in dam tailraces and lower ladder sections and warmer water in the upstream portions of ladders. Using radiotelemetry, we examined relationships between fish passage behavior and the temperature difference between the top and bottom of ladders (∆T) at four dams over four years. Some spring Chinook salmon (O. tshawytscha) experienced ∆T ≥ 0.5 °C. Many summer and fall Chinook salmon and summer steelhead (O. mykiss) experienced ∆T ≥ 1.0 °C, and some individuals encountered ΔT > 4.0°C. As ΔT increased, migrants were consistently more likely to move down fish ladders and exit into dam tailraces, resulting in upstream passage delays that ranged from hours to days. Fish body temperatures equilibrated to ladder temperatures and often exceeded 20°C, indicating potential negative physiological and fitness effects. Collectively, the results suggest that gradients in fishway water temperatures present a migration obstacle to many anadromous migrants. Unfavorable temperature gradients may be common at reservoir-fed fish passage facilities, especially those with seasonal thermal layering or stratification. Understanding and managing thermal heterogeneity at such sites may be important for ensuring efficient upstream passage and minimizing stress for migratory, temperature-sensitive species.
机译:水力发电大坝上游水库中的热分层会在上游移民成年人使用的鱼道中产生温度梯度。在华盛顿的蛇河中,受联邦保护的成年鲑鱼(Oncorhynchus spp。)经常在大坝的尾水和较低的梯子段遇到相对凉爽的水,而在梯子的上游遇到较暖的水。使用无线电遥测技术,我们研究了四年中四个水坝的鱼通过行为与梯子顶部和底部温度之间的关系(∆T)。一些春季奇努克鲑鱼(O. tshawytscha)的ΔT≥0.5°C。许多夏季和秋季的奇努克鲑鱼和夏季硬头(O. mykiss)的ΔT≥1.0°C,有些人的ΔT> 4.0°C。随着ΔT的增加,移民总是更有可能沿着鱼梯移动并进入水坝尾水渠,从而导致上游通行延误从数小时到数天不等。鱼体温度达到阶梯温度,通常超过20°C,表明潜在的负面生理和健康影响。总体而言,结果表明,鱼道水温的梯度为许多无性移民带来了迁移障碍。在水库喂养的鱼类通过设施中,尤其是那些具有季节性热分层或分层的鱼类,其温度梯度可能很常见。了解和管理此类场所的热异质性对于确保有效的上游通道并最大程度地减少对温度敏感的迁徙物种的压力可能很重要。

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