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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Recommendations for extension and re-calibration of an existing sand constitutive model taking into account varying non-plastic fines content
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Recommendations for extension and re-calibration of an existing sand constitutive model taking into account varying non-plastic fines content

机译:考虑到不同的非塑料细颗粒含量,建议对现有的砂本构模型进行扩展和重新校准

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摘要

Experimental findings have revealed that up to a certain transitional threshold, adding non-plastic silt to coarse soils like sands leads to the increase in susceptibility of liquefaction. In silty sands, silt grains fill voids between the coarse constituent, but do not actively participate in stress transmitting micro-structure. To consider the partial participation of fines in load bearing structure, an equivalent intergranular void ratio is suggested. The proposed empirical relationship, takes into account the combined influence of fines content, soil gradation, and the average shape of coarse and fine constituents. An equivalent intergranular state parameter is employed in the model formulation to define soil state uniquely. Moreover, recent experimental studies indicate that the consequences of initial anisotropy on the mechanical behavior of silty sands are mitigated with the increase in fines content. To consider this phenomenon, vector magnitude, a measurable index of anisotropy, is related to fines content. Then, proper constitutive equations are introduced to modify plastic hardening modulus and critical state line in loading paths involving rotation of principal stress axes. The simulative capability of the model is evaluated by direct comparison of its predictions with experimental data of triaxial and hollow cylindrical cells reported by four research teams.
机译:实验结果表明,在达到一定的过渡阈值之前,将非塑料淤泥添加到像沙子这样的粗糙土壤中会导致液化敏感性增加。在粉沙中,粉粒填充了粗粒成分之间的空隙,但没有积极参与应力传递的微观结构。为了考虑细粉在承重结构中的部分参与,建议使用等效的晶间空隙率。建议的经验关系考虑了细粉含量,土壤等级以及粗细成分的平均形状的综合影响。在模型公式中使用等效的晶间状态参数来唯一定义土壤状态。此外,最近的实验研究表明,随着粉料含量的增加,初始各向异性对粉质砂土力学行为的影响有所减轻。为了考虑这种现象,矢量量级(可测量的各向异性指标)与细粉含量有关。然后,引入适当的本构方程来修改涉及主应力轴旋转的加载路径中的塑性硬化模量和临界状态线。通过将模型的预测与四个研究小组报告的三轴和空心圆柱单元的实验数据直接比较,可以评估模型的仿真能力。

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