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Stability analysis of steep nailed slopes under seismic condition using 3-D finite element method

机译:3-D有限元法在地震条件下陡坡钉岩的稳定性分析

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This paper presents the behavior of steep nailed soil slopes under seismic conditions by numerical studies. Three-dimensional solid numerical models have been developed to simulate steep nailed soil slopes by finite element (FE) method. The real-time history analyses are carried out to study the seismic response of steep-nailed soil slopes. The effect of various influencing parameters such as the nail inclination, nail length, frequency amplification factor, and the slope angles on the seismic resistance and failure mechanism of the nailed slopes is studied in details. All the numerical models developed have been used to examine the shaking table test results of steep nailed slopes (Hong et al., 2005). The numerical results such as maximum lateral displacements at various heights of the facing are compared with the test results for two different nail inclinations, nail lengths, frequency amplification factors, and the slope angles at various peak amplitudes of accelerations.
机译:通过数值研究,研究了钉子陡坡在地震条件下的行为。已经开发了三维实体数值模型,以通过有限元(FE)方法模拟陡峭的钉土坡度。进行了实时历史分析,以研究陡钉土坡的地震反应。详细研究了钉子的倾斜度,钉子的长度,频率放大系数和倾斜角度等各种影响参数对钉子斜坡的抗震性和破坏机理的影响。所开发的所有数值模型都已用于检验陡坡钉坡的振动台试验结果(Hong等,2005)。将数值结果(例如,在饰面的各个高度处的最大横向位移)与两种不同的钉子倾斜度,钉子长度,频率放大系数以及各种加速度峰值时的倾斜角度的测试结果进行比较。

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