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首页> 外文期刊>Sedimentology: Journal of the International Association of Sedimentologists >Interaction between lateral sorting in river bends and vertical sorting in dunes
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Interaction between lateral sorting in river bends and vertical sorting in dunes

机译:沙丘横向分拣与垂直分类之间的互动

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Sediment is sorted in river bends under the influence of gravity that pulls the heavier grains downslope and secondary flow that drags the finer grains upslope. Furthermore, when dunes are present, sediment is also sorted vertically at the dune lee side. However, sorting functions are poorly defined, since the relation to transverse bed slope and the interaction between lateral and vertical sorting is not yet understood for lack of data under controlled conditions. The objective of this study is to describe lateral sorting as a function of transverse bed slope and to gain an understanding of the interaction between lateral and vertical sorting in river bends. To this end, experiments were conducted with a poorly sorted sediment mixture in a rotating annular flume in which secondary flow intensity can be controlled separately from the main flow velocity, and therefore transverse bed slope towards the inner bend and dune dimensions can be systematically varied. Sediment samples were taken along cross-sections at the surface of dune troughs and dune crests, and over the entire depth at the location of dune crests (bulk samples), which enabled comparison of the relative contribution of vertical sorting by dunes to lateral sorting by the transverse bed slope. The data show that lateral sorting is always the dominant sorting mechanism in bends, and bulk samples showed minor effects of vertical sorting by dunes as long as all grain-size fractions are mobile. An empirical bend sorting model was fitted that redistributes the available sediment fractions over the cross-section as a function of transverse bed slope. Comparison with field data showed that the model accurately reproduces spatially-averaged trends in sorting at the bend apex in single-thread channels. The bend sorting model therefore provides a better definition of bend sorting with conservation of mass by size fraction and adds to current understanding of bend sorting. The implication for numerical modelling is that bend sorting mechanisms can be modelled independently of dunes, allowing the application of the active layer concept.
机译:在重力的影响下,沉积物在河弯曲中排序,从而拉动较重的谷物下坡和二次流动,拖动更精细的谷物上坡。此外,当存在沙丘时,沉积物也在沙丘李侧垂直分类。然而,分拣功能定义不足,因为尚未理解到横向和垂直分选之间的横向和垂直分选之间的相互作用以缺乏受控条件下的数据。本研究的目的是描述作为横向床斜率的函数的横向分类,并在河弯曲中获得横向和垂直分选之间的相互作用。为此,在旋转环形壳中用一个差分的沉积物混合物进行实验,其中次流强度可以与主流速度分开控制,因此可以系统地改变朝向内部弯曲和沙丘尺寸的横向床斜率。沉积物样本沿着沙丘槽和沙丘冠的表面截取,以及在沙丘嵴的位置(散装样本)的整个深度上,这使得通过沙丘的垂直分类的相对贡献使得横向分类的相对贡献横向床斜坡。数据表明,横向分选始终是弯曲中的主要分选机制,并且大量样品显示垂直分类的次要作用,只要所有晶粒尺寸分数都是移动的。拟合经验弯曲分选模型,其作为横截面横截面的横截面重新分配可用的沉积物级分。与现场数据的比较表明,该模型在单线通道中的弯曲顶点处的排序中精确地再现空间平均趋势。因此,弯曲分选模型通过尺寸分数守恒提供了更好的弯曲分选,并增加了对弯曲分选的了解。对数值建模的含义是弯曲分选机制可以独立于沙丘进行建模,允许应用活动层概念。

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