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Near-critical free-surface flows: real fluid flow analysis

机译:接近临界自由表面流量:实际流体流量分析

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摘要

An open channel flow with a flow depth close to the critical depth is characterised by a curvilinear streamline flow field that results in steady free surface undulations. Near critical flows of practical relevance encompass the undular hydraulic jump when the flow changes from supercritical (F 1) to subcritical (F 1), and the undular weir flow over broad-crested weirs where the flow changes from subcritical (F 1) to supercritical (F 1). So far these flows were mainly studied based on ideal fluid flow computations, for which the flow is assumed irrotational and, thus, shear forces are absent. While the approach is accurate for critical flow conditions (F = 1) in weir and flumes, near-critical flows involve long distances reaches, and the effect of friction on the flow properties cannot be neglected. In the present study the characteristics of near-critical free-surface flows are reanalysed based on a model accounting for both the streamline curvature and friction effects. Based on the improved model, some better agreement with experimental results is found, thereby highlighting the main frictional features of the flow profiles.
机译:流动深度接近临界深度的明渠水流的特征是曲线流线型流场,可产生稳定的自由表面起伏。具有实际相关性的近临界流包括当流量从超临界(F> 1)变为亚临界(F <1)时的波浪状水力跃迁,以及从亚临界(F <1)发生变化的宽顶堰上的波浪状堰流。 )至超临界(F> 1)。到目前为止,这些流量主要是基于理想的流体流量计算来研究的,在这种情况下,假定流量是非旋转的,因此没有剪切力。尽管该方法对于堰和水渠中的临界流动条件(F = 1)是准确的,但近临界流动涉及很长的距离,并且不能忽略摩擦对流动特性的影响。在本研究中,基于考虑流线曲率和摩擦效应的模型,重新分析了近临界自由表面流的特征。基于改进的模型,发现与实验结果更好地吻合,从而突出了流动曲线的主要摩擦特征。

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