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首页> 外文期刊>Geomorphology >Three-dimensional flow structure, morphodynamics, suspended sediment, and thermal mixing at an asymmetrical river confluence of a straight tributary and curving main channel
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Three-dimensional flow structure, morphodynamics, suspended sediment, and thermal mixing at an asymmetrical river confluence of a straight tributary and curving main channel

机译:支流和弯曲主干道非对称河流汇合处的三维流动结构,形态动力学,悬浮泥沙和热混合

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摘要

Past field studies of confluence dynamics have focused mainly on experimental or small stream confluences and confluences of large rivers. Few studies have explored fluvial processes and forms at confluences of medium-size rivers, especially those where river planform varies from a straight alignment. This study examines changes in flow structure, bed morphology, sediment suspension, and mixing with changing incoming flow conditions at a river confluence where a straight tributary joins a curving main channel at the upstream end of a bend. Data include five sets of field measurements of three-dimensional velocity components, bed topography, acoustic backscatter intensity, and water-surface temperatures at the confluence of the curving Wabash River and its straight tributary, the Embarras River. Results show that, in contrast to large river confluences, channel-scale helical motion is a prominent feature of flow structure at this confluence. Dual counter-rotating helical cells, separated by a distinct shear layer, develop over a region of scour within the confluence and contribute to maintenance of scour by sweeping sediment away from this region. Helical motion develops through channel curvature and flow deflection within the confluence. The location and geometry of the scour hole are subject to change depending on the relative momentum fluxes of the two rivers with the zone of scour shifting outward and enlarging as the momentum flux of the tributary increases relative to the momentum flux of the main river. Patterns of backscatter intensity, used here as a surrogate for suspended sediment concentration, confirm that near-bed suspended sediment moves around the scour hole. The thermal mixing interface between the two rivers corresponds to the position of the shear layer, and thermal mixing at the surface within the immediate vicinity of the confluence is limited. The hydrodynamics, morphodynamics, and patterns of sediment suspension and thermal mixing at this river confluence reflect a combination of confluence and bend dynamics. (C) 2018 Elsevier B.V. All rights reserved.
机译:过去对汇流动力学的野外研究主要集中在实验汇流或小河汇流以及大河汇流。很少有研究探索中型河流汇合处的河流过程和形式,尤其是那些河流平面形态从直线走向变化的河流。这项研究研究了河道汇合处的水流结构,河床形态,沉积物悬浮和混合以及不断变化的入水条件变化,在该河合流处直支流在弯头上游端连接了弯曲的主河道。数据包括在弯曲的瓦巴什河及其直流支流Embarras河交汇处的三组三维速度分量,床形,声学反向散射强度和水面温度的现场测量值。结果表明,与大型河流汇合相比,河道尺度的螺旋运动是该汇合处水流结构的突出特征。由一个独特的剪切层隔开的双重反向旋转的螺旋形细胞在汇合区内的冲刷区域上形成,并通过将沉积物从该区域清除而有助于维持冲刷状态。螺旋运动通过汇合处的通道曲率和流向偏转而发展。冲刷孔的位置和几何形状会根据两条河流的相对动量通量而变化,随着支流的动量通量相对于主要河流的动量通量增加,冲刷区域向外移动并增大。反向散射强度的模式(这里用作悬浮泥沙浓度的替代物)证实了近床层悬浮泥沙在冲刷孔周围移动。两条河流之间的热混合界面对应于剪切层的位置,并且在汇合处附近的表面处的热混合受到限制。在这条河汇流处,水动力,形态动力以及沉积物悬浮和热混合的模式反映了汇流和弯曲动力学的结合。 (C)2018 Elsevier B.V.保留所有权利。

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