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New Method to Compute Seismic Active Earth Pressure on Retaining Wall Considering Seismic Waves

机译:考虑地震波的挡土墙地震主动土压力计算新方法

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In earthquake prone areas, calculation of seismic active earth pressure on retaining wall is very important. Analytical methods till date for computation of seismic active earth pressure do not consider the effect of Rayleigh wave though it constitutes about 67 % of the total seismic energy. In this paper a new dynamic approach is proposed by considering all possible seismic waves viz. primary, shear and Rayleigh waves for estimation of seismic active earth pressure on rigid retaining wall by satisfying all the boundary conditions. Limit equilibrium method is used for estimation of optimised seismic active earth pressure for a rigid retaining wall supporting cohe-sionless backfill with critical combinations of seismic accelerations. The seismic influence zone obtained in this study is about 22 and 17 % larger when compared with available pseudo-static and pseudo-dynamic methods respectively, which indicates the significant effect of Rayleigh wave. Also, there is an increase of about 14 and 6 % in seismic active earth pressure coefficient when the present results are typically compared with pseudo-static and pseudo-dynamic methods respectively. Moreover present results compare well with the available experimental results. Present results are more critical for the design estimation of seismic active earth pressure by considering all major seismic waves as proposed in the new dynamic approach.
机译:在地震多发地区,计算挡土墙的地震主动土压力非常重要。迄今为止,用于计算地震活动土压力的分析方法并未考虑瑞利波的影响,尽管瑞利波约占地震总能量的67%。通过考虑所有可能的地震波,本文提出了一种新的动态方法。通过满足所有边界条件来估算刚性挡土墙的地震活动土压力的主波,剪切波和瑞利波。极限平衡法用于估算具有地震加速度临界组合的无粘结回填的刚性挡土墙的最佳地震活动土压力。与可用的拟静力和拟动力方法相比,本研究中获得的地震影响区分别大了约22%和17%,这表明瑞利波的显著作用。同样,当将当前结果分别与伪静态方法和伪动态方法进行比较时,地震活动土压力系数也分别增加了约14%和6%。此外,目前的结果与可用的实验结果很好地比较。通过考虑新动力方法中提出的所有主要地震波,目前的结果对于地震活动土压力的设计估算更为关键。

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