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Modeling Steep-Slope Flow across Staggered Emergent Cylinders: Application to Fish Passes

机译:跨越交错的圆柱体的陡坡流建模:在鱼道中的应用

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Designing efficient rock-ramp fish passes with flows over a bottom with roughness on the same scale as the water depth requires a precise knowledge of hydrodynamics in order to avoid or limit characteristics unattractive for fish, particularly for small fish. This paper considered the numerical modeling of free-surface flow across a steep-sloped ramp covered with staggered surface emergent cylinders. Considering the importance of complex flow features for fish passage, computational fluid dynamics (CFD) was adopted because it is capable of predicting such features. Because of the longitudinal periodicity of the arrangement of the obstacles, cyclic boundary conditions made this fine simulation possible. Two computational meshes (coarse and fine) and two turbulence models [shear stress transport (SST) k-omega and Smagorinsky large-eddy simulation (LES)] were used. The SST k-omega coarse mesh model gives correct time-averaged values, the main flow unstationarities and is usable for rock-ramp fish pass design, but a fine model using LES turbulence closure can provide detailed flow characteristics in the wakes in order to provide possible rest zones, particularly for smaller fish.
机译:设计高效的岩石斜路鱼类时,要使其底部的水流具有与水深相同的粗糙度,这需要对水动力有精确的了解,从而避免或限制对鱼类(特别是小型鱼类)没有吸引力的特征。本文考虑了覆盖有交错表面出水圆柱体的陡坡上自由表面流的数值模拟。考虑到复杂的流动特征对于鱼类通过的重要性,因此采用了计算流体力学(CFD),因为它能够预测这些特征。由于障碍物排列的纵向周期性,循环边界条件使这种精细的模拟成为可能。使用了两个计算网格(粗网格和精细网格)和两个湍流模型[剪切应力传输(SST)k-ω和Smagorinsky大涡模拟(LES)]。 SST k-omega粗网格模型可提供正确的时间平均值,主流动不稳定度,并且可用于石坡鱼道设计,但使用LES湍流闭合的精细模型可在尾流中提供详细的流动特性,从而提供可能的休息区,特别是对于较小的鱼类。

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