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Interaction between the braided bar and adjacent channel during flood: a case study of a sand-bed braided river, Brahmaputra-Jamuna

机译:洪水期间编织酒吧与相邻渠道之间的相互作用 - 以砂床编织河,Brahmaputra-jamuna为例

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The braided river is characterized by numerous bars which exhibit chaotic nature and add uncertainty to understand and prediction of the river network. The development of these bars may be affected by several factors like boundary conditions, forcing and non-linear physical processes. Here, in this research, some prevailing physical processes which may affect the growth of bar after its emergence have been examined. Then, attempts have been made to identify the relationships between the bars and their adjacent channels. For this purpose, a two-dimensional-depth-averaged morphodynamic model, Delft3D was used to study the interaction between the braided bar and adjacent channel during a flood in a compound bar dominated area at a large sand-bed braided river-Brahmaputra-Jamuna. The results showed that the 2D model can reproduce the major physical processes which are responsible for the growth of the bar. The study showed that the size and shape of the bars were dependent on the characteristics of the adjacent channels. The occurrence of chute channel over the bartop during the flood depends on the depth of flow over the bar during the flood.
机译:编织河的特点是众多酒吧,它表现出混沌性质并增加了解和预测河流网络的不确定性。这些栏的开发可能受到边界条件等几个因素的影响,强制和非线性物理过程。在此,在本研究中,在检查其出现后可能影响棒的生长的一些普遍的物理过程。然后,已经尝试识别条形和其相邻信道之间的关系。为此目的,使用二维深度平均的形态动力学模型Delft3D来研究编织杆和相邻通道之间的相互作用在大型砂床编织河 - Brahmaputra-jamuna的复合杆主导区域的洪水期间。结果表明,2D模型可以再现负责酒吧的生长的主要物理过程。该研究表明,条形的尺寸和形状取决于相邻通道的特性。在洪水期间,Bartop上的滑槽通道的发生取决于洪水期间杆上的流动深度。

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