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Effect of tunnel depth on the ampli?cation pattern of environmental vibrations considering the seismic interactions between the tunnel and the surrounding soil: A numerical simulation

机译:考虑到隧道与周围土壤之间的地震相互作用的隧道深度对隧道深度的影响:数值模拟

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The amplitude and frequency of seismic waves caused by an earthquake are modified according to the physical characteristics of the subsurface. Further modification is due to soil - structure kinematic interactions between the subsurface medium and the seismic waves. Analysis of ground motion and subsurface propagation of a seismic wave in the presence of an underground structure needs to include appropriate ground input motion parameters. In order to ensure the protection of important engineering structures, and to prevent environmental damage under earthquake excitation, the dynamic response of the vibrating underground structure needs to be carefully analyzed in terms of wave propagation problems. The aim of this study is to evaluate the effects of the amplification on free field motions, including the underground structure, when considering the tunnel-soil interaction, using numerical tools. The 2-D finite element method was used as a numerical model to determine the magnification effect of seismic excitation with various frequencies, on surface vibration, in the presence of a tunnel structure. Results showed that the presence of underground structure amplified the seismic vibrations on the free field and tunnel, depending on the frequency of the external load and the local soil condition.
机译:由地震引起的地震波的幅度和频率根据地下的物理特性进行修改。进一步的修改是由于地下介质和地震波之间的土壤结构运动相互作用。在地下结构存在下,地震波的地面运动和地下传播的分析需要包括适当的地输入运动参数。为了确保保护重要的工程结构,并防止地震激励下的环境损坏,在波传播问题方面需要仔细分析振动地下结构的动态响应。本研究的目的是评估扩增对自由场运动的影响,包括使用数值工具在考虑隧道土相互作用时的地下结构。 2-D有限元方法用作数值模型,以确定隧道结构存在下各种频率的地震激发的放大效应。结果表明,根据外部载荷的频率和局部土壤条件,地下结构的存在放大了自由场和隧道上的地震振动。

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