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Responses of reinforced soil retaining walls subjected to horizontal and vertical seismic loadings

机译:水平和垂直地震荷载下加筋土挡墙的响应

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摘要

Vertical ground acceleration is a component in an earthquake loading, and in some cases, the vertical to horizontal acceleration ratio (V/H ratio) may be very large. However, the influences of the vertical seismic loading on the responses of reinforced soil retaining walls are still not clear. In this study, a Finite Element procedure was further validated by a large-scale shaking table test subjected to both horizontal and vertical seismic loadings. It was then employed to investigate the seismic responses of two models considering a large range of earthquake loading scenarios. The results showed that the vertical ground acceleration might alter the shear wave propagation in the reinforced soil, but the Arias intensity at the top of the reinforced soil correlated well with the maximum reinforcement load. The vertical seismic loading mostly increased the reinforcement load, but reduced the residual facing displacement. The reduction of lateral facing displacement may have come from the increase of the confining pressure and the change in the far-field lateral displacement due to the vertical seismic loading. Some limitations of the present study are also discussed.
机译:垂直地面加速度是地震荷载中的一个组成部分,在某些情况下,垂直加速度与水平加速度之比(V / H比)可能会很大。但是,竖向地震荷载对加筋土挡墙响应的影响尚不清楚。在这项研究中,通过水平和垂直地震荷载作用下的大型振动台试验进一步验证了有限元程序。然后,它被用于研究考虑大范围地震荷载情况的两个模型的地震响应。结果表明,垂直地面加速度可能会改变加筋土中的剪切波传播,但加筋土顶部的Arias强度与最大加筋载荷有很好的相关性。垂直地震荷载主要增加了加固荷载,但减少了剩余的工作面位移。侧向位移的减少可能来自围压的增加以及由于垂直地震荷载引起的远场侧向位移的变化。还讨论了本研究的一些局限性。

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