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Deep turbidity currents in shallow channels

机译:浅通道中的深浊流

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Experimental results presented here quantify how the thickness of turbidity currents affects the evolution of an aggrading subaqueous channel. Ten sediment-laden currents with identical initial conditions were released into a tank to determine how depositional flows interact with and modify a pre-existing channel form. Deposition was always greatest on the channel floor, systematically reducing channel depth and causing the ratio of initial current thickness to channel depth to increase with each flow. The ratio of longitudinal to lateral current velocity decreased exponentially with increasing relative current thickness. This change in lateral spreading demarcated regimes of channelized, quasi-channelized, and unconfined flow. Channelized currents have thicknesses that are less than 1.3 times local channel depth; unconfined currents are greater than five times channel depth; and quasi-channelized currents occur in between. The unconfined cases were consistent with prior experiments and theory defining the flow field for nonchannelized turbidity currents. Sedimentation patterns for even the thickest currents were influenced by subdued channel topography.
机译:此处提供的实验结果量化了混浊电流的厚度如何影响正在沉淀的水下通道的演变。在初始条件相同的情况下,将十个载有泥沙的水流释放到一个水箱中,以确定沉积流如何与已存在的通道相互作用并对其进行修改。沉积总是在通道底面上最大,从而系统地减小了通道深度,并导致初始电流厚度与通道深度的比率随每次流动而增加。纵向电流速度与横向电流速度之比随相对电流厚度的增加呈指数下降。横向扩展的这种变化划定了通道化,准通道化和无限制流动的范围。沟道电流的厚度小于本地沟道深度的1.3倍;无限制电流大于通道深度的五倍;在它们之间会产生准通道电流。无限制的情况与先前的实验和定义非通道化浊流流场的理论是一致的。即使是最厚的水流,沉积模式也受到柔和的河道形貌的影响。

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