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Influence of Coherent Flow Structures on the Dynamics of Suspended Sediment Transport in Open-Channel Flow

机译:相干流结构对明渠水流悬浮泥沙运动的影响

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The influence of suspended sediments on coherent flow structures has been studied by simultaneously measuring the longitudinal and vertical components of the instantaneous velocity vector and the instantaneous suspended particle concentration with an acoustic particle flux profiler. The measurements were carried out in clear water and in particle-laden open-channel flows. In both cases, they clearly show the predominance of ejection and sweep phases that are part of a burst cycle. The analysis further demonstrates the importance of the ejection and sweep phases in sediment resuspension and transport. Ejections pick up the sediment at the bed and carry it up through the water column close to the surface. It is shown that ejections and sweeps are in near equality in the near-bottom layer, whereas ejections clearly dominate in the remaining water column. The implications of these results for sediment transport dynamics are discussed.
机译:通过用声粒子通量剖面仪同时测量瞬时速度矢量的纵向和垂直分量以及瞬时悬浮颗粒浓度,研究了悬浮沉积物对相干流动结构的影响。测量是在清澈的水中和充满颗粒的明渠水流中进行的。在这两种情况下,它们都清楚地表明了喷射和扫描阶段是脉冲周期的一部分。分析进一步证明了喷射和吹扫阶段在沉积物再悬浮和运输中的重要性。喷出物会吸收床层的沉积物,并将其通过靠近地面的水柱。结果表明,近底层的喷射和波及几乎相等,而剩余水柱中的喷射显然占主导地位。讨论了这些结果对沉积物迁移动力学的影响。

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