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首页> 外文期刊>Water resources research >Roles of Bank Material in Setting Bankfull Hydraulic Geometry as Informed by the Selenga River Delta, Russia
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Roles of Bank Material in Setting Bankfull Hydraulic Geometry as Informed by the Selenga River Delta, Russia

机译:俄罗斯塞伦加河三角洲介绍的堤岸材料在设定堤岸水力几何中的作用

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摘要

A semi-empirical bankfull Shields number relation as a function of slope, bed, and bank sediment grain size is obtained based on a field data set that includes the delta of the Selenga River, Russia, and other rivers from around the globe. The new Shields number relation is used in conjunction with continuity, flow resistance, and sediment transport equations to deduce predictive relations for bankfull width, depth, and slope of sand-bed rivers. In addition, hydraulic geometry relations are obtained specifically for the Selenga River delta. Key results of this study are as follows: (1) bankfull width is strongly dependent on water discharge and is directly related to bank sediment size; (2) bankfull shear velocity is weakly dependent on bed sediment size and is inversely related to bank sediment size; (3) sand-bed deltas with multiple distributary channels maintain smaller bankfull Shields numbers than is typical of alluvial rivers. This analysis is the first of its kind to include bank sediment size into a predictive bankfull Shields number relation to obtain relations for bankfull hydraulic geometry. The relations presented here can be utilized in morphodynamic models that explore how fluvial and deltaic systems respond to a range of imposed conditions, such as variable base level, sediment, and water supply.
机译:基于包括塞伦加河,俄罗斯和全球其他河流三角洲在内的现场数据集,获得了基于坡度,河床和河岸沉积物粒度的半经验河岸盾构数关系。新的Shields数关系与连续性,流阻和泥沙输送方程式结合使用,可以得出沙床河岸宽度,深度和坡度的预测关系。另外,专门为塞伦加河三角洲获得水力几何关系。这项研究的主要结果如下:(1)堤岸宽度强烈依赖于排水量,并且与堤岸沉积物的大小直接相关; (2)堤岸全剪切速度与河床底泥大小微弱相关,与堤岸底泥大小成反比; (3)与多个冲积河流相比,具有多个分流河道的沙床三角洲的堤岸盾构数较小。这种分析是首次将堤岸沉积物大小纳入预测堤岸Shields数关系中以获得堤岸水力几何关系的分析。此处介绍的关系可以用在形态动力学模型中,该模型探讨河流和三角洲系统如何响应一系列强加条件,例如可变的基准水位,沉积物和供水。

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