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Field-Based Evaluations of Horizontal Flat-Plate Fish Screens, II: Testing of a Unique Off-Stream Channel Device-the Farmers Screen

机译:基于水平的平板鱼屏的现场评估,II:独特的下游通道设备的测试-农民屏

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摘要

Screens are installed at water diversion sites to reduce entrainment of fish. Recently, the Farmers Irrigation District (Oregon) developed a unique flat-plate screen (the "Farmers Screen") that operates passively and may offer reduced installation and operating costs. To evaluate the effectiveness of this screen on fish, we conducted two separate field experiments. First, juvenile coho salmon Oncorhynchus kisutch were released over a working version of this screen under a range of inflows (0.02-0.42 m(3)/s) and diversion flows (0.02-0.34 m(3)/s) at different water depths. Mean approach velocities ranged from 0 to 5 cm/s and sweeping velocities ranged from 36 to 178 cm/s. Water depths over the screen surface ranged from 1 to 25 cm and were directly related to inflow. Passage of fish over the screen under these conditions did not severely injure them or cause delayed mortality, and no fish were observed becoming impinged on the screen surface. Second, juvenile coho salmon and steelhead O. mykiss were released at the upstream end of a 34-m flume and allowed to volitionally move downstream and pass over a 3.5-m section of the Farmers Screen to determine whether fish would refuse to pass over the screen after encountering its leading edge. For coho salmon, 75-95% of the fish passed over the screen within 5 min and 82-98% passed within 20 min, depending on hydraulic conditions. For steelhead, 47-90% of the fish passed over the screen within 5 min and 79-95% passed within 20 min. Our results indicate that when operated within its design criteria, the Farmers Screen provides safe and efficient downstream passage of juvenile salmonids under a variety of hydraulic conditions.
机译:在引水现场安装了筛网,以减少鱼的夹带。最近,农民灌溉区(俄勒冈州)开发了一种独特的平板滤网(“农民滤网”),它可以被动运行,并可以降低安装和运行成本。为了评估此筛网对鱼类的有效性,我们进行了两个单独的野外实验。首先,在不同的水深下,在一定范围的入水量(0.02-0.42 m(3)/ s)和分流水量(0.02-0.34 m(3)/ s)的作用下,在该筛网的工作版本上放出了幼小鲑鱼Oncorhynchus kisutch 。平均进场速度范围为0至5 cm / s,扫掠速度范围为36至178 cm / s。滤网表面的水深范围为1至25 cm,与入水量直接相关。在这些条件下,鱼越过筛子并不会严重伤害它们或导致延迟死亡,并且没有观察到鱼撞击到筛子表面。其次,在34米长的水槽的上游端放出了幼年的银大麻哈鱼和硬头O鱼,使其自愿向下游移动并越过农民筛的3.5米段,以确定鱼是否会拒绝通过屏幕遇到其领先优势后。对于银大麻哈鱼,视水力条件而定,有75-95%的鱼在5分钟内通过筛网,而82-98%的鱼在20分钟内通过筛网。对于硬头鱼,47-90%的鱼在5分钟内通过筛网,而79-95%的鱼在20分钟内通过筛网。我们的结果表明,在其设计标准内操作时,农夫筛可在各种水力条件下提供安全有效的少年鲑鱼下游通道。

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