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Initial formation and long-term evolution of channel-shoal patterns

机译:河道-浅滩型格局的初步形成和长期演变

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摘要

A complex process-based model (Delft3D) is used to simulate the formation of channels and shoals in a schematised estuary. The model set-up enables a comparison with results obtained from other studies using idealised models. Initial (one tidal cycle) as well as long-term (up to 300 years) simulations are made. Dominant wavelengths of channel-shoal patterns are investigated together with their dependency on width and depth of the basin and the local maximum velocity. Prevalent wavelengths range between 5 and 10 km and increase with increasing width and flow velocity. Initial model results are compared with those of idealised models. The dominant wavelengths are of the same order of magnitude as those found in idealised models and their dependency on width and velocity agrees qualitatively. (Exponential) growth of the perturbations during long-term simulations provides information on the limits of validity of the idealised models. Subsequent pattern formation and changes of dominant wavelengths are attributed to nonlinear interactions. Morphological developments during long-term simulations suggest that channel-shoal patterns evolve into a unique morphodynamic equilibrium state, independent of the initial perturbation. (C) 2004 Elsevier Ltd. All rights reserved.
机译:一个复杂的基于过程的模型(Delft3D)用于模拟示意性河口中河道和浅滩的形成。通过模型设置,可以与使用理想模型的其他研究获得的结果进行比较。进行了初始(一个潮汐周期)以及长期(长达300年)模拟。研究了通道-浅滩模式的主要波长,以及它们对盆地宽度和深度以及局部最大速度的依赖性。流行的波长范围在5至10 km之间,并且随着宽度和流速的增加而增加。将初始模型结果与理想模型的结果进行比较。主波长与理想模型中的波长处于相同数量级,并且它们对宽度和速度的依赖性在质量上是一致的。长期模拟过程中扰动的(指数)增长提供了有关理想化模型有效性限制的信息。随后的图案形成和主波长的变化归因于非线性相互作用。长期模拟中的形态学发展表明,通道-浅滩模式演变成独特的形态动力学平衡状态,与初始扰动无关。 (C)2004 Elsevier Ltd.保留所有权利。

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