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A new model for wave-induced instantaneous liquefaction in a non-cohesive seabed with dynamic permeability

机译:具有动态渗透性的非粘性海底静脉诱导瞬时液化模型

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摘要

Wave-induced instantaneous liquefaction is crucial to evaluating the stability of offshore foundations. For the instantaneous liquefaction, most previous studies treated the seabed as an invariant poro-elastic medium and hence led to nonphysical tensile stress in the non-cohesive liquefied zone. In this study, a penalty-like dynamic permeability model is proposed, based on the experimental evidences of permeability increase during soil liquefaction. The nonlinearity induced by the dynamic permeability is solved by an iterative procedure, based on the Newton-Raphson method. The numerical procedure is implemented in an in-house code and compared with analytical solutions under the constant permeability assumption. Numerical observations validate that the proposed dynamic permeability model can alleviate or even eliminate the nonphysical tensile stress in the instantaneously-liquefied zone. In contrast to the constant permeability model, the new model with a dynamic permeability obtains a better agreement with existing cylinder tests under one-dimensional wave loading conditions. For the numerical examples presented, the liquefaction depths predicted by constant permeability can be up to twice of those by the new dynamic permeability model. It is concluded that the conventional model with constant permeability overestimates the liquefaction potential.
机译:波浪诱导的瞬时液化对于评估近海基础的稳定性至关重要。对于瞬时液化,最先前的研究将海底作为不变的浮子弹性介质处理,因此导致非粘结液化区中的非物质拉伸应力。在这项研究中,提出了一种基于土壤液化过程中渗透性的实验证据的惩罚性动态渗透性模型。基于牛顿 - 拉申方法,通过迭代程序解决了由动态渗透性引起的非线性。数值过程在内部代码中实现,并与恒定渗透性假设下的分析解决方案进行比较。数值观察验证,所提出的动态渗透性模型可以缓解或甚至消除瞬时液化区中的非物理拉伸应力。与恒定渗透性模型相比,具有动态渗透率的新模型与一维波浪负载条件下的现有气缸试验具有更好的协议。对于所提出的数值示例,通过新的动态渗透性模型可以恒定渗透率预测的液化深度可以是两倍。结论是,具有恒定渗透性的常规模型高估液化潜力。

著录项

  • 来源
    《Ocean Engineering》 |2020年第1期|107597.1-107597.15|共15页
  • 作者单位

    Beijing Jiaotong Univ Key Lab Urban Underground Engn Minist Educ Beijing 100044 Peoples R China;

    Griffith Univ Sch Engn & Built Environm Gold Coast Campus Gold Coast Qld 4222 Australia;

    Chinese Acad Sci Inst Mech Key Lab Mech Fluid Solid Coupling Syst Beijing 100190 Peoples R China|Univ Chinese Acad Sci Sch Engn Sci Beijing 100049 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Dynamic permeability; Excess pore pressure; Soil liquefaction; Wave-seabed interaction;

    机译:动态渗透率;过量的孔隙压力;土壤液化;波浪海底互动;

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