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Seismic rotational stability of gravity retaining walls by modified pseudo-dynamic method

机译:修正拟动力法分析重力挡土墙的地震旋转稳定性

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Seismic stability analysis is an important aspect for design of safe retaining walls in earthquake prone areas. In this study, limit equilibrium method is used for rotational stability analysis of gravity retaining wall on rigid foundation supporting dry cohesionless backfill with modified pseudo-dynamic seismic forces. Proposed method satisfies the zero stress boundary condition at free ground surface and considers the amplification of acceleration. Stability factor Fwis proposed to determine the safe weight of the retaining wall against rotational failure under seismic conditions. If the safe weight of the retaining wall is known under static condition then by simply multiplying that with F-W can give the safe weight of the retaining wall against rotational failure under seismic condition. Present study shows that wall-soil interaction in various seismic conditions may or may not be in-phase for the entire duration of the input motion. It depends on the properties of the backfill soil, properties of the wall material and also on the frequency content of the input motion. A modified rotating block method is proposed to obtain the rotational displacement under seismic conditions. Present results give higher values of rotational displacements of the wall when compared with the available results by pseudo-static analysis. Hence the present study may be used to design seismically stable retaining wall.
机译:地震稳定性分析是地震多发地区安全挡土墙设计的重要方面。在这项研究中,极限平衡法用于刚性地基上重力重力式挡土墙的旋转稳定性分析,该刚性地基采用改进的拟动力地震力支持干无粘性回填。提出的方法满足自由地面零应力边界条件,并考虑了加速度的放大。稳定性因子Fwis建议确定在地震条件下抵抗旋转破坏的挡土墙的安全重量。如果在静态条件下知道挡土墙的安全重量,则只需将其乘以F-W即可得出在地震条件下抵抗旋转破坏的挡土墙的安全重量。目前的研究表明,在各种地震条件下,墙土相互作用在输入运动的整个过程中可能是同相的,也可能不是同相的。它取决于回填土的特性,墙体材料的特性以及输入运动的频率含量。提出了一种改进的旋转块法来获得地震条件下的旋转位移。与通过伪静力分析获得的现有结果相比,当前结果给出了更高的墙体旋转位移值。因此,本研究可用于设计抗震稳定的挡土墙。

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