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不同压实度铁路路堤边坡地震响应振动台试验研究 被引量:13
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作者 林宇亮 杨果林 钟正 《岩土力学》 EI CAS CSCD 北大核心 2012年第11期3285-3291,共7页
为研究和对比不同压实度铁路路堤边坡的地震响应,设计了路堤本体压实度分别为95%、91%、87%和83%的4组路堤边坡模型,开展了不同压实度路堤边坡的振动台试验研究。通过穿插进行白噪声激励得到不同压实度路堤边坡的动力特性参数;通过施加... 为研究和对比不同压实度铁路路堤边坡的地震响应,设计了路堤本体压实度分别为95%、91%、87%和83%的4组路堤边坡模型,开展了不同压实度路堤边坡的振动台试验研究。通过穿插进行白噪声激励得到不同压实度路堤边坡的动力特性参数;通过施加不同类型和不同强度的地震动激励,研究不同压实度路堤边坡加速度放大倍数分布规律及其影响因素。结果表明,随着地震动激励次数的增多,路堤边坡自振频率下降,阻尼比增大,压实度对路堤边坡动力特性变化影响显著;加速度放大倍数沿路堤边坡高度呈非线性增大,加速度放大倍数随地震动激励强度增大而减小;台面输入的地震波经路堤边坡传播后,其频谱特性发生了明显的变化,不同压实度路堤边坡对地震波频谱特性的影响不同;不同地震动激励下不同压实度路堤边坡的加速度放大倍数分布情况有所差异,这与地震动频谱特性和路堤边坡动力特性参数有关。 展开更多
关键词 铁路路堤边坡 压实度 自振频率 地震响应 振动台试验
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Numerical analysis on seismic behavior of railway earth embankment: A case study
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作者 林宇亮 石峰 +2 位作者 杨啸 杨果林 李丽民 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第4期906-918,共13页
A numerical case study on the seismic behavior of embankment was carried out based on a prototype of earth embankment in Yun-Gui Railway (from Kunming City to Nanning City) in southwest of China. A full-scale model ... A numerical case study on the seismic behavior of embankment was carried out based on a prototype of earth embankment in Yun-Gui Railway (from Kunming City to Nanning City) in southwest of China. A full-scale model of earth embankment was established by means of numerical simulation with FLAC3D code. The numerical results were verified by shaking table test. The seismic behaviors of earth embankment were studied, including the horizontal acceleration response, the vertical acceleration response, the dynamic displacement response, and the block state of earth embankment. Results show that the acceleration magnification near the embankment slope is larger than that in internal earth embankment body. With the increase of input peak acceleration, the horizontal acceleration magnification presents a decreasing trend. The horizontal acceleration response at the top of embankment is more sensitive to the intensity of ground motion than that at the bottom of cmbankment. The embankment presents an obvious nonlinear-plastic characteristic when the input horizontal peak acceleration is larger than 0.3 g. The maximum residual deformation occurs in the middle of embankment slope surface instead of at the top of embankment. The upper part of embankment experiences tension failure without shear failure, and area at mainly presents shear failure under the earthquake loading. surface of earth embankment. the bottom of embankment around the symmetry-axis of embankment The tension failure and shear failure repeatedly occur along the slope 展开更多
关键词 earth embankment numerical analysis seismic behavior EARTHQUAKE
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