首页> 外文期刊>Journal of geophysical research. Earth Surface: JGR >Bed form genesis from bed defects under unidirectional, oscillatory, and combined flows
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Bed form genesis from bed defects under unidirectional, oscillatory, and combined flows

机译:在单向流,振荡流和组合流作用下,床层缺陷产生床层

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摘要

New experimental data on bed form initiation under unidirectional, oscillatory, and combined flows are presented to gain quantitative insight into bed form genesis from artificially generated defects on a flat sediment-laden bed. Planform changes revealed in time-lapse photography allowed study of the evolution of the downstream and upstream edges of defects from their initial geometric center. Based on this temporal data set and flow velocity profiles, it was observed that combined flow bed forms share the same bed form initiation processes as unidirectional and oscillatory flows, which are reflected directly in the generation of similar geometric patterns regardless of the hydrodynamic conditions. The development of these bed defects is strongly coupled to the direction and magnitude of the shear stress applied to the bed throughout the wave cycle. Under current-dominated combined flow conditions, no defect propagation occurred in the upstream direction, despite the presence of flow reversal. In addition, spectral analysis of the evolution of the downstream and upstream edges of the defects demonstrated that (i) periodicity in the defect growth pattern scales with the wave period for pure oscillatory flows; (ii) wave-dominated combined flows possess a period-driven peak with respect to defect growth in experiments with relatively short wave periods, but this peak is absent in experiments possessing relatively long wave periods (T >15s); and (iii) current-dominated combined flows and pure unidirectional flows do not display a period-driven peak in defect growth. These results suggest that the occurrence of long-period combined flow bed forms may be underrepresented in the sedimentary record.
机译:提出了有关单向流动,振荡流动和组合流动下河床形态萌发的新实验数据,以定量地了解来自平坦沉积物床中人工产生的缺陷的河床形态成因。延时摄影中揭示的平面变化允许研究缺陷的下游边缘和上游边缘从其初始几何中心的演变。基于此时间数据集和流速剖面,可以观察到组合流床形态与单向流和振荡流共享相同的床形态引发过程,无论流体动力条件如何,它们都直接反映在相似几何图案的生成中。这些床缺陷的产生与整个波周期中施加到床的剪切应力的方向和大小密切相关。在电流主导的组合流动条件下,尽管存在逆流,但在上游方向上没有发生缺陷传播。另外,对缺陷的下游和上游边缘的演变的光谱分析表明:(i)缺陷生长模式的周期性随纯振荡流的波周期而变化; (ii)在波浪周期相对较短的实验中,以波浪为主的结合流在缺陷生长方面具有一个周期驱动的峰值,但在波浪周期相对较长的实验中(T> 15s),该峰值不存在; (iii)以电流为主的组合流和纯单向流在缺陷增长方面没有显示出周期驱动的峰值。这些结果表明,在沉积记录中,长时期混合流床形式的出现可能不足。

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