首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Formation and erosion of sediment cover in an experimental bedrock-alluvial channel
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Formation and erosion of sediment cover in an experimental bedrock-alluvial channel

机译:实验性基岩冲积河道沉积物覆盖层的形成与侵蚀

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Sediment grains in a bedrock-alluvial river will be deposited within or adjacent to a sediment patch, or as isolated grains on the bedrock surface. Previous analysis of grain geometry has demonstrated that these arrangements produce significant differences in grain entrainment shear stress. However, this analysis neglected potential interactions between the sediment patches, local hydraulics and grain entrainment. We present a series of flume experiments that measure the influence of sediment patches on grain entrainment. The flume had a planar bed with roughness that was much smaller than the diameters of the mobile grains. In each experiment sediment was added either as individual grains or as a single sediment pulse. Flow was then increased until the sediment was entrained. Analysis of the experiments demonstrates that: (1) for individual grains, coarse grains are entrained at a higher discharge than fine grains; (2) once sediment patches are present, the different in entrainment discharge between coarse and fine grains is greatly reduced; (3) the sheltering effect of patches also increases the entrainment discharge of isolated grains; (4) entire sediment patches break-up and are eroded quickly, rather than through progressive grain-by-grain erosion; (5) as discharge increases there is some tendency for patches to become more elongate and flow-aligned, and more randomly distributed across the bed. One implication of this research is that the critical shear stress in bedrock-alluvial channels will be a function of the extent of the sediment cover. Another is that the influence of sediment patches equalizes critical shear stresses between different grain sizes and grain locations, meaning that these factors may not need to be accounted for. Further research is needed to quantify interactions between sediment patches, grain entrainment and local hydraulics on rougher bedrock surfaces, and under different types of sediment supply. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:基岩冲积河中的沉积物颗粒将沉积在沉积斑块之内或附近,或作为隔离颗粒沉积在基岩表面。先前对晶粒几何形状的分析表明,这些排列在晶粒夹带剪切应力上产生了显着差异。但是,该分析忽略了沉积物斑块,局部水力和夹带颗粒之间的潜在相互作用。我们提出了一系列的水槽实验,以测量沉积物斑对夹带颗粒的影响。该水槽具有平坦的床,其粗糙度远小于可移动颗粒的直径。在每个实验中,沉积物要么作为单个颗粒添加,要么作为单个沉积物脉冲添加。然后增加流量直到夹带沉积物。实验分析表明:(1)对于单个晶粒,粗粒夹杂物的排出量高于细粒。 (2)一旦出现沉积物斑块,粗粒和细粒之间夹带流量的差异就会大大减少; (3)斑块的遮盖作用还增加了孤立谷物的夹带排放; (4)整个沉积物块破裂并迅速侵蚀,而不是通过逐粒侵蚀进行侵蚀; (5)随着排放量的增加,斑块有一些趋向于变得更细长和流动对齐的趋势,并更随机地分布在整个床上。该研究的一个含义是,基岩冲积河道中的临界剪切应力将取决于沉积物覆盖的范围。另一个是沉积物斑块的影响使不同晶粒尺寸和晶粒位置之间的临界剪应力相等,这意味着这些因素可能不需要考虑。需要进一步的研究以量化在粗糙的基岩表面上以及在不同类型的沉积物供应下,沉积物斑块,颗粒夹带和局部水力之间的相互作用。版权所有(c)2016 John Wiley&Sons,Ltd.

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