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Morphodynamic simulation of sediment deposition patterns on a recently stripped bedrock anastomosed channel

机译:最近剥落的基岩沉积通道上沉积物沉积图案的形态学模拟

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Some mixed bedrock-alluvial dryland rivers are known to undergo cycles of alluvial building during low flow periods, punctuated by stripping events during rare high magnitude flows. We focus on the Olifants River, Kruger National Park, South Africa, and present 2-D morphodynamic simulations of hydraulics and sediment deposition patterns over an exposed bedrock anastomosed pavement. We examine the assumptions underlying a previous conceptual model, namely that sedimentation occurs preferentially on bedrock highs. Our modelling results and local field observations in fact show that sediment thicknesses are greater over bedrock lows, suggesting these are the key loci for deposition, barform initiation and island building. During peak flows, velocities in the topographic lows tend to be lower than in intermediate topographic areas. It is likely that intermediate topographic areas supply sediment to the topographic lows at this flow stage, which is then deposited in the lows on the falling limb of the hydrograph as velocities reduce. Subsequent vegetation establishment on deposits in the topographic lows is likely to play a key role in additional sedimentation and vegetation succession, both through increasing the cohesive strength of alluvial units and by capturing new sediments and propagules.
机译:已知一些混合的基岩冲积旱地河流在低流量期间发生冲积建筑物的循环,通过稀有高幅度流动的剥离事件来调分。我们专注于橄榄树河,克鲁格国家公园,南非,并在暴露的基岩局部的路面上显示了液压和泥沙沉积图案的2-D形态动力学模拟。我们检查先前概念模型的底层的假设,即沉淀优先在基岩高位上发生。事实上,我们的建模结果和本地观测结果表明,沉积物厚度大于基岩低点,建议这些是沉积,砖石启动和岛屿建筑的关键基因座。在峰值流动期间,地形低点的速度往低于中间地形区域。中间地形区域可能在该流动阶段提供沉积物,然后在水文照片的下降肢体上沉积在低点上的速度。随后在地形低点的沉积物上的植被建立可能在额外的沉降和植被继承中发挥关键作用,既通过增加冲积单元的凝聚力和捕获新的沉积物和繁殖。

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