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Numerical study of wave-induced soil response in a sloping seabed in the vicinity of a breakwater

机译:防波堤附近倾斜海底波浪引起的土壤响应的数值研究

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In this study, a mathematical integrated model is developed to investigate the wave-induced sloping seabed response in the vicinity of breakwater. In the present model, the wave model is based on the Volume-Averaged/Reynolds Averaged Navier-Stokes (VARANS) equations, while Biot's consolidation equation is used to govern the soil model. The influence of turbulence fluctuations on the mean flow with respect to the complicated interaction between wave, sloping seabed and breakwater are obtained by solving the Volume-Averaged k-epsilon model. Unlike previous investigations, the phase-resolved absolute shear stress is used as the source of accumulation of residual pore pressure, which can link the oscillatory and residual mechanisms simultaneously. Based on the proposed model, parametric studies regarding the effects of wave and soil characteristics as well as bed slopes on the wave-induced soil response in the vicinity of breakwater are investigated. Numerical results indicate that wave-induced seabed instability is more likely to occur in a steep slope in the case of soil with low relative density and low permeability under large wave loadings. It is also found that, the permeability of breakwater significantly affect the potential for liquefaction, especially in the region below the breakwater. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项研究中,建立了一个数学综合模型来研究防波堤附近波浪引起的倾斜海底响应。在本模型中,波浪模型基于体积平均/雷诺平均纳维-斯托克斯(VARANS)方程,而Biot固结方程则用于控制土壤模型。通过求解体积平均k-ε模型,获得了湍流波动对波浪,倾斜海底和防波堤之间复杂相互作用的平均流量的影响。与以前的研究不同,相分辨的绝对切应力被用作残余孔隙压力累积的来源,残余孔隙压力可以同时链接振荡机制和残余机制。基于提出的模型,研究了有关波浪和土壤特性以及河床坡度对防波堤附近波浪引起的土壤响应的影响的参数研究。数值结果表明,在大波浪荷载下,相对密度低,渗透率低的土壤,在陡坡上更容易发生波浪诱发的海床失稳。还发现,防波堤的渗透性显着影响液化的潜力,特别是在防波堤以下的区域。 (C)2015 Elsevier Ltd.保留所有权利。

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