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Three-dimensional numerical model for wave-induced seabed response around mono-pile

机译:波浪对单桩周围海床响应的三维数值模型

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摘要

In this study, a new three-dimensional model was developed to provide a better understanding of the mechanism for wave-induced seabed response around the mono-pile. Based on the poro-elastic theory, the fully dynamic formulations were adopted in the present model to simulate the pore pressure, soil stresses and the displacements of both soil and mono-pile. Good agreement between the numerical simulation and experimental results was obtained. Based on the parametric study, the numerical results concluded that (1) the wave diffraction and reflection have significant effects on the pore pressure and soil displacements around the mono-pile; (2) the largest discrepancy of pore pressure due to the variation in seabed parameters appears in front of mono-pile, while the smallest discrepancy is at the position of angle 3π/4 with respect to the incident wave direction and (3) the increase in the mono-pile horizontal displacement corresponds to the increase in the wave height and the decrease in the seabed Young's modulus.
机译:在这项研究中,开发了一个新的三维模型,以更好地理解单桩周围海浪引起的海床响应的机制。基于孔隙弹性理论,本模型采用全动态公式模拟孔隙压力,土壤应力以及土体和单桩的位移。数值模拟与实验结果吻合良好。在参数研究的基础上,数值结果表明:(1)波的衍射和反射对单桩周围的孔隙压力和土壤位移有显着影响; (2)由于海床参数变化引起的最大孔隙压力差异出现在单桩前方,而最小差异相对于入射波方向位于3π/ 4角位置,(3)增大单桩水平位移的变化对应于波高的增加和海床杨氏模量的减少。

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