首页> 外文期刊>Journal of Freshwater Ecology >The influence of a severe reservoir drawdown on springtime zooplankton and larval fish assemblages in Red Willow Reservoir, Nebraska
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The influence of a severe reservoir drawdown on springtime zooplankton and larval fish assemblages in Red Willow Reservoir, Nebraska

机译:内布拉斯加州红柳水库严重水库降落对春季浮游动物和幼体鱼类组合的影响

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Reservoirs can be dynamic systems, often prone to unpredictable and extreme water-level fluctuations, and can be environments where survival is difficult for zooplankton and larval fish. Although numerous studies have examined the effects of extreme reservoir drawdown on water quality, few have examined extreme drawdown on both abiotic and biotic characteristics. A fissure in the dam at Red Willow Reservoir in southwest Nebraska necessitated an extreme drawdown; the water level was lowered more than 6 m during a two-month period, reducing reservoir volume by 76%. During the subsequent low-water period (i.e., post-drawdown), spring sampling (April–June) showed dissolved oxygen concentration was lower, while turbidity and chlorophyll-a concentration were greater, relative to pre-drawdown conditions. Additionally, there was an overall increase in zooplankton density, although there were differences among taxa, and changes in mean size among taxa, relative to pre-drawdown conditions. Zooplankton assemblage composition had an average dissimilarity of 19.3% from pre-drawdown to post-drawdown. The ratio of zero to non-zero catches was greater post-drawdown for larval common carp and for all larval fishes combined, whereas we observed no difference for larval gizzard shad. Larval fish assemblage composition had an average dissimilarity of 39.7% from pre-drawdown to post-drawdown. Given the likelihood that other dams will need repair or replacement in the near future, it is imperative for effective reservoir management that we anticipate the likely abiotic and biotic responses of reservoir ecosystems as these management actions will continue to alter environmental conditions in reservoirs.
机译:水库可以是动态系统,通常容易发生不可预测的极端水位波动,并且可能是浮游动物和幼体鱼类难以生存的环境。尽管许多研究已经研究了极端水库减少对水质的影响,但很少有研究对非生物和生物特征两者进行过极端降低。内布拉斯加州西南部的红柳水库的大坝发生裂缝,因此需要大幅度缩水。在两个月的时间内,水位下降了6 m以上,使水库容量减少了76%。在随后的低水期(即下降后),春季水样(4月至6月)显示,相对于下降前的条件,溶解氧浓度较低,而浊度和叶绿素-a浓度较高。此外,尽管相对于垂降条件,分类单元之间存在差异,并且分类单元之间的平均大小有所变化,但浮游动物的密度总体上有所增加。从下降前到下降后,浮游动物集合体组成的平均相异度为19.3%。幼体鲤鱼和所有幼体鱼类的零捕获量与非零捕获量之比更大,而我们观察到的幼体g鱼没有差异。幼虫鱼组合组成从下拉前到下拉后的平均差异为39.7%。考虑到其他大坝在不久的将来可能需要维修或更换的可能性,有效的水库管理势在必行,因为这些管理措施将继续改变水库的环境条件,因此我们必须预测水库生态系统可能发生的非生物和生物反应。

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