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首页> 外文期刊>International journal of geomechanics >How Small Strain Stiffness and Yield Surface Affect Undrained Excavation Predictions
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How Small Strain Stiffness and Yield Surface Affect Undrained Excavation Predictions

机译:小应变刚度和屈服面如何影响不排水开挖预测

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This paper discusses how small-strain stiffness and some aspects of the yield surface affect the finite-element predictions of excavation responses, including wall and ground deformations. By using the in-house-developed constitutive model SC1SS, it is possible to isolate and quantify impacts brought about by selected aspects of the soil behavior. This soil model has been validated to reasonably model Taipei silty clay and deep excavations in such soil. This study shows that ignoring small-strain stiffness can overestimate deformations by as much as 80%, leading to conservative and costly design. Inclined yield surface and Lode-angle dependency (on deviatoric planes) have lesser effects on the prediction results. In addition, the mechanisms behind these impacts are investigated through numerical triaxial tests.
机译:本文讨论了小应变刚度和屈服面的某些方面如何影响开挖响应的有限元预测,包括墙体和地面变形。通过使用内部开发的本构模型SC1SS,可以隔离和量化由土壤行为的某些方面带来的影响。该土壤模型已经过验证,可以合理地模拟台北粉质粘土和此类土壤中的深基坑。这项研究表明,忽略小应变刚度会高估变形80%,从而导致设计保守且成本高昂。倾斜的屈服面和洛德角相关性(在偏斜面上)对预测结果的影响较小。此外,还通过数值三轴试验研究了这些影响的机理。

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