Simulating Erosive and Accretive Conditions in the Swash: Applications of a Nonlinear Wave and Morphology Evolution Model

A. Samaras, T. Karambas
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Abstract

This work presents a new model for surf and swash zone morphology evolution induced by nonlinear waves. Wave transformation in the surf and swash zones is computed by a nonlinear wave model based on the higher order Boussinesq equations for breaking and non-breaking waves. Regarding sediment transport, the model builds on previous research by the authors and incorporates the latest update of a well-founded sediment transport formula. The wave and morphology evolution model is validated against two sets of experiments on beach profile change and is afterwards used to test the performance of a widely-adopted erosion/accretion criterion. The innovation of this work is the validation of a new Boussinesq-type morphology model under both erosive and accretive conditions at the foreshore (accretion is rarely examined in similar studies), which the model reproduces very well without modification of the empirical coefficients of the sediment transport formula used; furthermore, the model confirms the empirical erosion/accretion criterion even for conditions beyond the ones it was developed for and without imposing any model constraints. The presented set of applications highlights model capabilities in simulating swash morphodynamics, as well as its suitability for coastal erosion mitigation and beach restoration design
模拟沼泽中的侵蚀和增殖条件:非线性波浪和形态演变模型的应用
本研究提出了一种由非线性波引起的冲浪区和斜滩区形态演变的新模型。冲浪区和沼泽区的波浪变化是通过非线性波浪模型计算出来的,该模型基于高阶布辛斯方程,适用于破浪和非破浪。在泥沙输运方面,该模型建立在作者先前研究的基础上,并结合了最新更新的有充分依据的泥沙输运公式。波浪和形态演变模型通过两组海滩剖面变化实验进行了验证,然后用于测试广泛采用的侵蚀/侵蚀标准的性能。这项工作的创新之处在于验证了在前滩侵蚀和增生条件下(类似研究中很少对增生进行研究)的新布西内斯克形态模型,该模型在不修改所使用的沉积物运移公式的经验系数的情况下,很好地再现了这些条件;此外,该模型还证实了经验侵蚀/增生标准,甚至超出了它所针对的条件,并且没有施加任何模型限制。所介绍的一系列应用突出了模型模拟沼泽地形态动力学的能力,以及模型在减缓海岸侵蚀和海滩修复设计中的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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