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Vertical ground motion and its effects on liquefaction resistance of fully saturated sand deposits

机译:垂直地震动及其对饱和砂土抗液化性的影响

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摘要

Soil liquefaction has been extensively investigated over the years with the aim to understand its fundamental mechanism and successfully remediate it. Despite the multi-directional nature of earthquakes, the vertical seismic component is largely neglected, as it is traditionally considered to be of much lower amplitude than the components in the horizontal plane. The 2010–2011 Canterbury earthquake sequence in New Zealand is a prime example that vertical accelerations can be of significant magnitude, with peak amplitudes well exceeding their horizontal counterparts. As research on this topic is very limited, there is an emerging need for a more thorough investigation of the vertical motion and its effect on soil liquefaction. As such, throughout this study, uni- and bidirectional finite-element analyses are carried out focusing on the influence of the input vertical motion on sand liquefaction. The effects of the frequency content of the input motion, of the depth of the deposit and of the hydraulic regime, using variable permeability, are investigated and exhaustively discussed. The results indicate that the usual assumption of linear elastic response when compressional waves propagate in a fully saturated sand deposit does not always hold true. Most importantly post-liquefaction settlements appear to be increased when the vertical component is included in the analysis.
机译:多年来,对土壤液化进行了广泛的研究,旨在了解其基本机理并成功地对其进行修复。尽管地震具有多向性,但垂直地震分量在很大程度上被忽略了,因为传统上认为它的振幅比水平面中的振幅低得多。新西兰2010-2011年坎特伯雷地震序列就是一个很好的例子,垂直加速度的幅度可能很大,峰值幅度远远超过水平幅度。由于关于该主题的研究非常有限,因此需要对垂直运动及其对土壤液化的影响进行更彻底的研究。因此,在整个研究过程中,对输入的垂直运动对砂土液化的影响进行了单向和双向有限元分析。使用可变的渗透率,研究并详尽地讨论了输入运动的频率含量,沉积深度和水力状况的影响。结果表明,当压缩波在完全饱和的砂矿中传播时,线性弹性响应的通常假设并不总是成立。最重要的是,当分析中包括垂直分量时,液化后沉降似乎会增加。

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