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Conversion of Vertical Slot Fishways to Deep Slot Fishways to Maintain Operation during Low Flows: Implications for Hydrodynamics

机译:将垂直插槽鱼道转换为深槽渔场,以在低流动期间保持操作:对流体动力学的影响

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摘要

Deep slot fishways (DSF) are similar to vertical slot fishways (VSF) except that a sill has been placed at the base of the slot, and thus require a lower discharge to operate. The conversion of a VSF to a DSF, which requires minimal design modifications, can make for a more flexible design in inflow management, maintaining the correct operation of the fishway in periods of limited water availability. It is, however, crucial to understand the new flow conditions that will be created inside the fishway, and their implications for fish passage. In this paper, the hydrodynamics of DSF were studied for two different pool configurations and five sill heights. The investigation comprised the analysis of the water surface configuration, the velocity and turbulence fields, as well as the definition of the equations that related discharges to depths in the pools. The DSF designs compared well in terms of water surface patterns and maximum velocities with VSFs, but resulted in a more complex three-dimensional flow pattern and increased turbulence levels. Further testing with fish is needed to analyze whether the benefits of retrofitting a VSF by adding a sill during low flows are cancelled out by increased fish passage difficulty.
机译:深槽鱼道(DSF)类似于垂直插槽鱼道(VSF),不同之处在于将窗台放置在槽的底座上,因此需要较低的放电来操作。 VSF转换为DSF,需要最小的设计修改,可以在流入管理中进行更灵活的设计,维持在有限的水可用性时期的鱼道的正确操作。然而,了解将在鱼道内创建的新流动条件以及它们对鱼类通道的影响是至关重要的。在本文中,研究了两种不同的池配置和五个窗台高度的DSF的流体动力学。该研究包括水面构造,速度和湍流场的分析,以及与池中的深度相关的方程的定义。 DSF设计在水面图案和具有VSF的最大速度方面比较良好,但是导致更复杂的三维流动模式和增加的湍流水平。需要使用鱼类进行进一步测试来分析通过增加在低流量期间加入VSF的益处是通过增加的鱼通道难度取消。

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