水力对圆虾虎鱼(Neogobius melanostomus)、金鱼鱼(Gobio Gobio)和牛头鱼(Cottus Gobio)在垂直槽鱼通道中通过的影响

IF 1.6 3区 农林科学 Q3 FISHERIES
Joschka Wiegleb, Philipp E. Hirsch, Frank Seidel, Georg Rauter, Patricia Burkhardt-Holm
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引用次数: 2

摘要

每一条通过垂直槽鱼通道向上游迁移的鱼都必须游过槽,槽中水流的阻力会影响其通过成功。在不同排水速率(80 L/s和130 L/s)的条件下,测量了垂直槽内底栖鱼类保存体所承受的水力压力,比较了圆虾虎鱼Neogobius melanostomus Pallas, 1814, gobion Gobio L.和bullhead Cottus Gobio L.)必须克服的水力负荷。然后将三个空间轴上测量的力与声学多普勒速度测量值和每种鱼39-45条活鱼的通过概率进行比较。在高放水量条件下,圆虾虎鱼和牛头鱼的通航率分别降低了28.26%和39.29%。Gudgeon表示,当经历130 L/s的较大水力时,与较低的水排量相比,通道和接近的数量增加。与圆虾虎鱼(平均0.32 N±0.12 SD)和圆头虾虎鱼(0.35 N±0.14 SD)相比,粗尾虾承受的水压(平均0.27 N±0.12标准差)明显更低。潜在地,在较高的水流量下增加的水力有助于减少圆虾虎鱼和牛头鱼的通道。鲟鱼与其他鱼类的行为不同,说明了不同的鱼类如何处理流动的水和所经历的水压。我们的方法提供了一种以物种为导向的生态相关鱼类通道流场评估。这些发现代表了有目的鱼类通道设计发展的重要一步,这对于面向生态系统的河流连通性至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Impact of hydraulic forces on the passage of round goby (Neogobius melanostomus), gudgeon (Gobio gobio) and bullhead (Cottus gobio) in a vertical slot fish pass

Impact of hydraulic forces on the passage of round goby (Neogobius melanostomus), gudgeon (Gobio gobio) and bullhead (Cottus gobio) in a vertical slot fish pass

Every fish migrating upstream through vertical slot fish passes must swim through slots, where the resistance force of flowing water could affect the passage success. We measured the hydraulic force acting on the body of preserved benthic fish in a vertical slot at different water discharge rates (80 and 130 L/s) to compare the hydraulic burden individual fish species (round goby Neogobius melanostomus Pallas, 1814, gudgeon Gobio gobio L. and bullhead Cottus gobio L.) must overcome. The forces measured in three spatial axes were then compared to acoustic Doppler velocity measurements and the passage probability of 39–45 live fish per species. Passage probability reduction of 28.26% for round goby and 39.29% for bullhead was observed at the higher water discharge. Gudgeon showed increased numbers of passages and approaches when larger hydraulic forces were experienced at 130 L/s compared to the lower water discharge. Gudgeon experienced significantly lower hydraulic forces (mean 0.27 N ± 0.12 standard deviation) compared to round goby (mean 0.32 N ± 0.12 SD) and bullhead (0.35 N ± 0.14 SD). Potentially, the increased hydraulic forces at the higher water discharge contributed to the reduction in passages in round goby and bullhead. That gudgeon behaved differently from the other species illustrates how fish species deal differently with flowing water and the hydraulic forces experienced. Our approach provides a species-oriented assessment of the flow field in ecologically relevant fish passes. These findings represent an important step towards the development of purposeful fish pass designs, which is essential for ecosystem-oriented river connectivity.

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来源期刊
Ecology of Freshwater Fish
Ecology of Freshwater Fish 农林科学-海洋与淡水生物学
CiteScore
4.10
自引率
0.00%
发文量
45
审稿时长
12-24 weeks
期刊介绍: Ecology of Freshwater Fish publishes original contributions on all aspects of fish ecology in freshwater environments, including lakes, reservoirs, rivers, and streams. Manuscripts involving ecologically-oriented studies of behavior, conservation, development, genetics, life history, physiology, and host-parasite interactions are welcomed. Studies involving population ecology and community ecology are also of interest, as are evolutionary approaches including studies of population biology, evolutionary ecology, behavioral ecology, and historical ecology. Papers addressing the life stages of anadromous and catadromous species in estuaries and inshore coastal zones are considered if they contribute to the general understanding of freshwater fish ecology. Theoretical and modeling studies are suitable if they generate testable hypotheses, as are those with implications for fisheries. Manuscripts presenting analyses of published data are considered if they produce novel conclusions or syntheses. The journal publishes articles, fresh perspectives, and reviews and, occasionally, the proceedings of conferences and symposia.
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