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VIBRATION REDUCTION FOR PLANE WAVES BY USING PERIODIC PILE BARRIERS

机译:使用周期桩障碍物减少平面波的振动

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Many researchers have analyzed the screening effectiveness of a row(s) of piles and used them to reduce the environmental vibrations.However, the periodic nature of rows of piles has been neglected.Piles that are arranged in a periodic configuration constitute a type of periodic structures.Band of frequency gaps (BFGs) exists in these periodic structures.Elastic waves with frequencies in the range of the BFGs cannot propagate in the medium.In this paper, the theory of periodic structures is utilized to study the vibration reduction by using rows of piles, The plane wave expansion method and COMSOL program are used to study the BFGs of two-dimensional (2D) three-component periodic pile barriers.The effect of filling fraction on the first complete BFGs is investigated, In order to verify the effectiveness, a 2D pile-soil finite element model is built, and input loads with different fiequencies are considered.Theoretical analysis and numerical simulation show the frequency zones of vibration reduction are consistent with the BFGs.The present investigation provides a new method for designing pile barriers to block mid-frequency vibration due to train.
机译:许多研究人员分析了一排桩桩的筛选效果,并使用它们来减少环境振动,但是忽略了一排桩桩的周期性性质,以周期性配置的桩构成了一种周期性的桩。这些周期结构中存在频隙带(BFGs),频率在BFGs范围内的弹性波无法在介质中传播。利用平面波扩展方法和COMSOL程序研究二维(2D)三分量周期性桩障的BFG,研究了填充率对第一个完整BFG的影响,以验证其有效性建立了二维桩土有限元模型,并考虑了不同频率的输入载荷。离子的减少与BFGs一致。本研究提供了一种设计桩障的新方法,以阻止火车引起的中频振动。

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