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Swimming behaviour and ascent paths of brook trout in a corrugated culvert

机译:波纹涵洞内河鳟的游泳行为和上升路径

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摘要

Culverts may restrict fish movements under some hydraulic conditions such as shallow flow depths or high velocities. Although swimming capacity imposes limits to passage performance, behaviour also plays an important role in the ability of fish to overcome velocity barriers. Corrugated metal culverts are characterized by unsteady flow and existence of low-velocity zones, which can improve passage success. Here, we describe swimming behaviour and ascent paths of 148 wild brook trout in a 1.5-m section of a corrugated metal culvert located in Raquette Stream, Quebec, Canada. Five passage trials were conducted in mid-August, corresponding to specific mean cross-sectional flow velocities ranging from 0.30 to 0.63m/s. Fish were individually introduced to the culvert and their movements recorded with a camera located above the water. Lateral and longitudinal positions were recorded at a rate of 3Hz in order to identify ascent paths. These positions were related to the distribution of flow depths and velocities in the culvert. Brook trout selected flow velocities from 0.2 to 0.5m/s during their ascents, which corresponded to the available flow velocities in the culvert at the low-flow conditions. This however resulted in the use of low-velocity zones at higher flows, mainly located along the walls of the culvert. Some fish also used the corrugations for sheltering, although the behaviour was marginal and did not occur at the highest flow condition. This study improves knowledge on fish behaviour during culvert ascents, which is an important aspect for developing reliable and accurate estimates of fish passage ability.
机译:涵洞在某些水力条件下可能会限制鱼的活动,例如浅水流深度或高速。尽管游泳能力限制了航行性能,但行为在鱼类克服速度障碍的能力中也起着重要作用。波纹金属涵洞的特点是流量不稳定且存在低速区域,可以提高通道成功率。在这里,我们描述了位于加拿大魁北克省拉奎特溪的波纹金属涵洞1.5米长的部分中148条野河鳟的游泳行为和上升路径。 8月中旬进行了五次通过试验,对应于0.30至0.63m / s的特定平均横截面流速。将鱼分别引入涵洞,并使用位于水面上方的摄像机记录其运动。以3Hz的频率记录横向和纵向位置,以识别上升路径。这些位置与涵洞内水深和流速的分布有关。溪鳟在上升期间选择的流速为0.2到0.5m / s,这对应于低流量条件下涵洞中的可用流速。但是,这导致使用高流速的低速区域,主要是沿着涵壁。一些鱼也使用波纹来遮蔽,尽管这种行为是微不足道的,并且在流量最高的情况下不会发生。这项研究提高了涵洞上升过程中鱼类行为的知识,这对于建立可靠而准确的鱼类通过能力估计值是一个重要方面。

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