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Numerical analysis of the isolation of the vibration due to Rayleigh waves by using pile rows in the poroelastic medium

机译:多孔弹性介质中桩排隔离瑞利波振动的数值分析

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The isolation of the vibration due to harmonic Rayleigh waves using pile rows embedded in a saturated poroelastic half-space is investigated in this study. Based on Biot's theory and the potential function method, the free field solution for Rayleigh waves along the surface of the poroelastic half-space is derived first. The fundamental solution for a harmonic circular patch load applied in the poroelastic half-space are obtained in terms of Biot's theory and the integral transform method. Using Muki's method and the fundamental solution for the circular patch load as well as the Rayleigh waves solution for the poroelastic half-space, the second kind of Fredholm integral equations in the frequency domain for pile rows are derived. Numerical solution of the integral equations yields the dynamic response of the pile-soil system to incident Rayleigh waves. Influences of various parameters on the vibration isolation effect of piles rows are investigated numerically. Numerical results suggest that for the same vibration source, the same pile rows will produce a better vibration isolation effect for the poroelastic medium than for a single phase elastic medium. Also, stiffer piles tend to have better vibration isolation effect than flexible piles. Moreover, the pile length and the spacing between neighboring piles in each pile row have significant influence on the vibration isolation effect of pile rows.
机译:在本研究中,研究了使用饱和多孔弹性半空间中嵌入的桩排来隔离由谐波瑞利波引起的振动。基于Biot理论和势函数方法,首先推导了沿多孔弹性半空间表面的瑞利波的自由场解。根据Biot理论和积分变换方法,获得了施加在多孔弹性半空间中的谐波圆形贴片载荷的基本解。利用Muki的方法和圆形补丁荷载的基本解以及多孔弹性半空间的瑞利波解,推导了桩排频域中的第二类Fredholm积分方程。积分方程的数值解产生了桩土系统对入射瑞利波的动力响应。数值研究了各种参数对排桩隔振效果的影响。数值结果表明,对于相同的振动源,相同的排桩对多孔弹性介质将产生比单相弹性介质更好的隔振效果。另外,较硬的桩比柔性桩具有更好的隔振效果。而且,桩长和每排排中相邻桩之间的间距对桩排的隔振效果有重要影响。

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