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首页> 外文期刊>Chemical geology >Dam reverse flow events influence limnological variables and fish assemblages of a downstream tributary in a Neotropical floodplain
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Dam reverse flow events influence limnological variables and fish assemblages of a downstream tributary in a Neotropical floodplain

机译:大坝反向流动事件影响新洪泛省洪泛省的下游支流的in Limnological Variables和Fish组装

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We used a dam-free tributary (the Baia River) in the upper Parana River floodplain downstream of a major dam in the Parana River, Brazil to investigate the effects of dam-regulated reverse flow on limnological variables and fish. We tested the hypotheses that limnological variables in tributaries change based on flow direction and that fish assemblages respond to this variation. Sampling sites were determined considering flow direction (normal or reverse) and position (near or far from the river mouth). Limnological variables showed higher values for transparency, oxygen, pH, and electrical conductivity at sites near the mouth of the Baia River during reverse flow. Species richness and evenness differed significantly in relation to position, with higher values closer to the Parana River. The average standard length of fish species was higher near the mouth of the Baia River and during the reverse flow period. No significant differences in species abundance were found. Reverse flow into the Baia River brought nutrient-poor water from the dammed Parana River, thereby altering the limnological variables. This flow condition impelled the entry of species with higher average standard lengths. However, increased species richness and low evenness were due to the increase in species dispersal rates under all flow conditions. Our results emphasize that the effects of dams can extend several kilometres into the floodplain, provide basic knowledge on the effects of major dams on downstream pristine tributaries, and highlight the need for further studies to understand the wider influences.
机译:我们在帕拉娜河的主要大坝下游的大坝河洪泛区中使用了一条无大坝的支流(Baia河),以调查大坝调节逆流对植物气体变量和鱼类的影响。我们测试了基于流动方向的支流变化的假设,并且鱼机响应了这种变化。考虑到流动方向(正常或反向)和位置(近或远离河口)确定采样部位。在逆转流动期间,Limnological变量显示在Baia河口附近的透明度,氧气,pH和电导率下的透明度,氧气,pH和电导率更高。物种丰富性和均匀度与位置有关大幅不同,较高的值更接近Parana河。鱼类的平均标准长度较高,靠近Baia河口和逆流期间。发现了物种丰富的显着差异。反向流入Baia河从渔民河河带来营养不良的水,从而改变了宁静的变量。该流动条件透过具有较高平均标准长度的物种的入口。然而,种类的丰富性和低均匀性增加是由于在所有流动条件下的物种分散率的增加。我们的结果强调了大坝的影响可以将几公里延伸到洪泛区,为主要水坝对下游原始支流的影响提供基础知识,并强调需要进一步研究以了解更广泛的影响。

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