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Accuracy and comparison of standard k-ϵ with two variants of k-ω turbulence models in fluvial applications

机译:标准K-ε的准确性和比较河流应用中的k-ω湍流模型的两个变体

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摘要

Racetrack flumes are established experimental settings in ecohydraulics and sediment studies. Their experimental results are often coupled with numerical simulations. The two-equation turbulence closures of the Reynolds-Averaged Navier-Stokes equations are applied widely in such engineering applications. They are preferred for their ease of use and low computational costs compared with more sophisticated turbulence models involving large-scale fluvial simulations. Here, three variants of two-equation models, i.e. the standard k-ϵ model and two variants of k-ω models, were applied to tackle mean flow and turbulence in a racetrack flume and a river reach. Regarding model performances, we found an overall reasonable agreement between simulated and measured mean velocity values. Nonetheless, the simulated turbulent kinetic energy exhibited discrepancies to the measured values. The computational costs of all investigated model variants are comparable. Therefore, there is no significant preference among models. The findings confirm the application of these model approaches for mean flow-related investigations (e.g. habitat modeling) but suggest exercising caution for applications sensitive to turbulent processes.
机译:赛道灯泡是在生态液流和沉积物研究中建立的实验设置。它们的实验结果通常与数值模拟相结合。在这种工程应用中广泛应用雷诺平均的Navier-Stokes方程的两级湍流闭合。与涉及大规模河流模拟的更复杂的湍流模型相比,它们是优选的,易于使用和低计算成本。这里,两个等式模型的三个变型,即标准K-ε模型和k-Ω模型的两个变体,用于在跑道水槽和河流范围内缠绕平均流量和湍流。关于模型表演,我们发现模拟和测量的平均速度值之间的总体合理协议。尽管如此,模拟湍流动能表现出对测量值的差异。所有调查模型变体的计算成本是可比的。因此,模型之间没有显着的偏好。该研究结果证实了这些模型方法的应用,以便对平均流量相关的调查(例如栖息地建模),但表明对对湍流过程敏感的应用程序的谨慎行事。

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