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First wide-angle view of channelized turbidity currents links migrating cyclic steps to flow characteristics

机译:通道化浊流的第一个广角视图将迁移的循环步骤与流动特性联系起来

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摘要

Field observations of turbidity currents remain scarce, and thus there is continued debate about their internal structure and how they modify underlying bedforms. Here, I present the results of a new imaging method that examines multiple surge-like turbidity currents within a delta front channel, as they pass over crescent-shaped bedforms. Seven discrete flows over a 2-h period vary in speed from 0.5 to 3.0 ms−1. Only flows that exhibit a distinct acoustically attenuating layer at the base, appear to cause bedform migration. That layer thickens abruptly downstream of the bottom of the lee slope of the bedform, and the upper surface of the layer fluctuates rapidly at that point. The basal layer is inferred to reflect a strong near-bed gradient in density and the thickening is interpreted as a hydraulic jump. These results represent field-scale flow observations in support of a cyclic step origin of crescent-shaped bedforms.
机译:现场对浑浊流的观察仍然很少,因此关于其内部结构以及它们如何改变基本床形的争论不断。在这里,我介绍了一种新的成像方法的结果,该方法可以检查三角洲前通道中的多个浪涌状浑浊流过新月形床形时的浊流。在2小时内,七个离散流的速度在0.5到3.0µms -1 之间变化。只有在底部显示出明显的声学衰减层的流才会引起床形迁移。该层在床形的背风斜面底部的下游突然变厚,并且该层的上表面在该点快速波动。推断基层反映出强的近床层密度梯度,而增厚被解释为水力跃变。这些结果代表了现场规模的流动观测结果,以支持月牙形床形的周期性阶梯成因。

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