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Numerical study on wave propagation over a fluid-mud layer with different bottom conditions

机译:不同底部条件下流体在泥浆层上传播的数值研究

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Wave decay over a muddy seabed has been widely reported. In previous studies, the fluid-mud layer is usually treated as a homogeneous layer with a certain thickness lying on the rigid bottom. However, the muddy seabed beneath a fluid-mud layer is usually movable in practice. This study aims to find out the influence of the movable seabed beneath a fluid-mud layer. For this purpose, a numerical model for wave propagation over a multilayered muddy seabed is developed, in which water is treated as a Newtonian fluid, and the rheology of mud is described by a visco-elastic-plastic model. The laboratory experiments of Sakakiyama and Bijker (J Waterw Port Coast Ocean Eng 115(5):614-633, 1989) are chosen to validate the numerical model. The model is then employed to investigate the movement of a fluid-mud layer with different conditions of the underlying mud layer and its influence on wave decay. It is found that the underlying mud layer plays a very important role in the wave-mud interaction and greatly affects the wave decay rate.
机译:广泛报道了在泥泞的海床上的波浪衰减。在以前的研究中,流体泥浆层通常被视为均质层,其一定厚度位于刚性底部上。但是,在实践中,泥浆层下方的泥质海床通常是可移动的。这项研究的目的是找出流体泥浆层下面可移动海床的影响。为此,建立了在多层泥质海底传播波的数值模型,其中将水视为牛顿流体,并用粘弹塑性模型描述了泥浆的流变性。选择Sakakiyama和Bijker(J Waterw Port Coast Ocean Eng 115(5):614-633,1989)的实验室实验来验证数值模型。然后,使用该模型研究具有不同条件下层泥浆层的流体泥浆层的运动及其对波浪衰减的影响。发现下面的泥层在波浪泥浆相互作用中起着非常重要的作用,并极大地影响波浪的衰减速率。

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