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Collapse surface approach as a criterion of flow liquefaction occurrence in 3D FEM models

机译:塌陷表面法作为3D FEM模型中流液化发生的标准

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摘要

In order to detect the flow liquefaction occurrence, a mathematical criterion is suggested based on the collapse surface or flow line approach. For this purpose, using Dafalias-Manzari constitutive model the multiaxial form of stress ratio at the onset of flow liquefaction is derived and compared with the current stress ratio as well. This stress ratio criterion is evaluated first for both monotonic and cyclic undrained triaxial tests. In such cases, for definable values of flow stress ratio the flow liquefaction is correctly diagnosed; and otherwise when the stress ratio is mathematically indefinable the flow occurrence is basically not expected. In addition, two centrifuge model tests are also numerically modeled using FEM and the application of suggested criterion is assessed in these models. The sudden drop of void ratio values right at the detected flow time, testify that the stress ratio criterion can properly distinguish the onset of flow liquefaction in each elements of a FEM models. By comparing the flow time of several elements with different locations, it can be concluded that the flow occurrence has a progressive pattern. In other words, the surface elements experience flow liquefaction earlier than more confined elements.
机译:为了检测流液化的发生,提出了基于塌陷面或流线法的数学准则。为此,使用Dafalias-Manzari本构模型,导出了流动液化开始时应力比的多轴形式,并将其与当前应力比进行了比较。首先针对单调和循环不排水三轴试验评估该应力比标准。在这种情况下,对于可确定的流应力比值,可正确诊断流液化。否则,当应力比在数学上无法定义时,基本上就不会发生流动。此外,还使用有限元法对两个离心机模型试验进行了数值模拟,并在这些模型中评估了建议标准的应用。在检测到的流动时间,空隙率值的突然下降证明了应力比率标准可以正确地区分FEM模型每个元素中的流动液化。通过比较几个具有不同位置的元素的流动时间,可以得出结论,流动发生具有渐进模式。换句话说,表面元素比更密闭的元素更早地经历液化。

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