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SENSITIVITY OF MODELED NEARSHORE MORPHOLOGY TO WAVE AND SEDIMENT TRANSPORT FORMULATIONS

机译:模拟近海形态对波浪和沉积物传输公式的敏感性

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Two models are discussed that describe the initial formation of nearshore large-scale rhythmic morphology due to feedbacks between the wave-driven large-scale flow and the erodible bottom. The aim is to gain fundamental knowledge about the sensitivity of modeled bar characteristics to the description of waves and sediment transport, in case of obliquely incident waves and planar reference beach profiles. The two models differ mostly in the wave description (with different degrees of complexity) and both of them are supplied with two different sediment transport formulations. Systems of sand bars with longshore rhythmicity emerge as free instabilities of the system. Including randomness in wave heights largely affects the modeled bar growth and dynamics. Results are also different for the two sediment transport formulations. In particular, the differences in the cross-shore distribution of the wave stirring function lead to different characteristics of the fastest growing modes.
机译:讨论了两个模型,它们描述了由于波浪驱动的大规模水流与易蚀底部之间的反馈而引起的近岸大规模节律形态的初始形成。目的是获得有关建模的条形特征对波浪和沉积物传输的敏感性(在倾斜入射波和平面参考海滩剖面的情况下)的基础知识。这两种模型在波浪描述上有很大不同(复杂程度不同),并且都提供了两种不同的泥沙输运公式。具有长岸节奏性的沙洲系统以系统的自由不稳定性出现。包括波高的随机性在很大程度上影响了建模的条形增长和动力学。两种沉积物输送方式的结果也不同。特别地,波浪搅拌函数的跨岸分布的差异导致最快增长模式的不同特征。

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