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热流屏障对鱼类的影响:水温、流速和体型对北方直口鲇(Pseudochondrostoma duriense)自愿游泳能力的影响。

Effect of thermo-velocity barriers on fish: influence of water temperature, flow velocity and body size on the volitional swimming capacity of northern straight-mouth nase (Pseudochondrostoma duriense).

机构信息

GEA-Ecohidráulica, Centro Tecnológico Agrario y Agroalimentario, Palencia, Spain.

GEA-Ecohidráulica, Department of Agroforestry Engineering, University of Valladolid, Palencia, Spain.

出版信息

J Fish Biol. 2023 Mar;102(3):689-706. doi: 10.1111/jfb.15310. Epub 2023 Jan 30.

Abstract

Water temperature and flow velocity directly affect the fish swimming capacity, and thus, both variables influence the fish passage through river barriers. Nonetheless, their effects are usually disregarded in fishway engineering and management. This study aims to evaluate the volitional swimming capacity of the northern straight-mouth nase (Pseudochondrostoma duriense), considering the possible effects of water temperature, flow velocity and body size. For this, the maximum distance, swim speed and fatigue time (FT) were studied in an outdoor open-channel flume in the Duero River (Burgos, Spain) against three nominal velocities (1.5, 2.5 and 3 m s ) and temperatures (5.5, 13.5 and 18.5°C), also including the changes between swimming modes (prolonged and sprint). Results showed that a nase of 20.8 cm mean fork length can develop a median swim speed that exceeds 20.7 BL s (4.31 m s ) during a median time of 3.4 s in sprint mode, or 12.2 BL s (2.55 m s ) for 23.7 s in prolonged mode under the warmest scenario. During prolonged swimming mode, fish were able to reach further distances in warmer water conditions for all situations, due to a greater swimming speed and FT, whereas during sprint mode, warmer conditions increased the swim speed maintaining the FT. In conclusion, the studied temperature range and flow velocity range influence fish swimming performance, endurance and distance travelled, although with some differences depending on the swimming mode. The provided information goes a step forward in the definition of real fish swimming capacities, and in turn, will contribute to establish clear passage criteria for thermo-velocity barriers, allowing the calculation of the proportion of fish able to pass a barrier under different working scenarios, as well designing of the optimized solutions to improve the fish passage through river barriers.

摘要

水温与流速直接影响鱼类的游泳能力,因此这两个变量会影响鱼类洄游通过河流障碍物。尽管如此,在鱼道工程和管理中通常会忽略它们的影响。本研究旨在评估北方直口鲇(Pseudochondrostoma duriense)的主动游泳能力,同时考虑水温、流速和体型的可能影响。为此,在杜罗河(西班牙布尔戈斯)的户外明渠水槽中,针对三个名义流速(1.5、2.5 和 3 m·s )和三个温度(5.5、13.5 和 18.5°C),研究了最大距离、游泳速度和疲劳时间(FT),同时还包括游泳模式(持续和冲刺)之间的变化。结果表明,体长 20.8 cm 的直口鲇在冲刺模式下可达到的中位游泳速度超过 20.7 BL·s(4.31 m·s ),中位时间为 3.4 s;在最温暖的条件下,以持续模式可达到 12.2 BL·s(2.55 m·s ),持续 23.7 s。在持续游泳模式下,由于游泳速度和 FT 较大,鱼类在较温暖的水中可以游得更远;而在冲刺模式下,温暖的条件会提高游泳速度,同时保持 FT 不变。综上所述,研究范围内的温度和流速会影响鱼类的游泳性能、耐力和游泳距离,尽管在不同的游泳模式下存在一些差异。所提供的信息为定义鱼类的实际游泳能力迈出了一步,这反过来将有助于确定热-流速障碍物的明确通行标准,计算不同工作场景下能够通过障碍物的鱼类比例,以及设计优化解决方案以提高鱼类通过河流障碍物的能力。

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