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Correlation Effects of Near-Field Seismic Components in Circular Metro Tunnels: A Case Study—Tehran Metro Tunnels

机译:圆形地铁隧道隧道近场地震成分的相关效果:一种案例研究 - 德黑兰地铁隧道

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Seismic evaluation of underground structures such as tunnels requires nonlinear dynamic analysis, due to the complex dynamic behavior of soil and the interaction of soil and structure. Simulation of the seismic response of the structure using nonlinear dynamic analysis is possible only with proper acceleration time history. Considering the vertical component of the earthquake (such as near-fault earthquakes) on the site is an important factor to achieve real structural responses. In the current study, soil-tunnel system has been modeled in ABAQUS software, considering Mohr–Coulomb nonlinear model for soil and concrete damage plasticity model for tunnel lining. In order to investigate the effect of seismic components correlation under different combinations of loads on the acceleration, axial force, and maximum shear force in tunnel lining, nonlinear dynamic analysis has been performed under four near-field earthquakes with different horizontal and vertical component ratios, considering 15 load combinations. The results show that increasing the vertical-horizontal component ratio has an insignificant effect on the maximum horizontal acceleration experienced by the tunnel lining. Also, the results of axial forces and shear forces indicate that increasing the ratio of vertical to horizontal components of the earthquake is the most effective factor on the axial force response.
机译:由于土壤的复杂动态行为和土壤和结构的相互作用,隧道等地下结构的地震评价需要非线性动态分析。使用非线性动态分析的结构的地震响应的模拟只有适当的加速时间历史。考虑到网站上地震(如近断层地震)的垂直分量是实现真实结构反应的重要因素。在目前的研究中,考虑到隧道衬里的土壤和混凝土损伤塑性模型的Mohr-Coulomb非线性模型,土壤隧道系统已在ABAQUS软件中进行建模。为了探讨在隧道衬里的加速度,轴向力和最大剪切力的不同组合的不同组合中的抗震部件相关性的影响,在具有不同水平和垂直分量比的四个近场地震下进行了非线性动力学分析,考虑到15个负载组合。结果表明,增加垂直水平分量比对隧道衬里所经历的最大水平加速度具有微不足道的影响。而且,轴向力和剪切力的结果表明,增加地震的水平部件的垂直比率是轴向力响应的最有效因素。

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