基于改进CAM粘土模型的粘土中群桩的非线性侧向响应

Avinash V. Navale, C. Solanki, V. Sawant, Yamini Jala
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引用次数: 0

摘要

采用三维有限元分析方法,从桩侧位移和最大弯矩两方面研究了3 × 3方桩群的桩侧响应。土壤用8节点等参单元表示。桩和承台采用20节点等参数单元进行建模。采用16节点等参界面单元建立桩与周围土体的连续性。土壤用修正的Cam粘土判据表示。整个代码是用FORTRAN 90开发的。通过参数化研究,探讨了屈服准则、土模量、桩间距、桩径和桩长径比对3 × 3嵌套粘土桩群响应的影响。观察到这些参数有相当大的影响。研究发现,在所有情况下,群桩中间排最大弯矩均高于前、后排。群桩位移和弯矩随土体模量、桩距和桩径的增大而减小。随着桩长细比的增大,桩的位移增大,最大弯矩减小。与Mohr-Coulomb模型相比,改进的Cam粘土模型预测了更大的位移,突出了p0对屈服面的影响。根据得到的结果,预测了位移为5mm、直径的10%和直径的20%时的极限载荷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NONLINEAR LATERAL RESPONSE OF PILE GROUP IN CLAY USING THE MODIFIED CAM CLAY SOIL MODEL
Lateral pile response of the 3 × 3 square pile group has been investigated in terms of lateral displacement and maximum bending moment using three-dimensional finite element analysis. Soil is represented using 8-node isoparametric elements. Piles and pile cap are modelled using 20-node isoparametric elements. The 16-node isoparametric interface elements are used to establish the continuity between the pile and surrounding soil. Soil is represented by the modified Cam clay criterion. The entire code has been developed in FORTRAN 90. The parametric study has been performed to investigate the effect of yield criteria, soil modulus, pile spacing, pile diameter and pile length-to-diameter ratio on the response of the 3 × 3 pile group embedded in clay. A considerable effect of these parameters is observed. It is found that the maximum bending moment in the middle row of the pile group is higher than the front and rear rows for all cases considered in the study. The pile displacement and bending moments in the pile group reduce with an increase in soil modulus, pile spacing and pile diameter. As pile slenderness is increased, it causes an increase in displacement of the pile and a decrease in the maximum bending moment. The modified Cam clay model predicts greater displacements as compared to the Mohr-Coulomb model highlighting the impact of p0 on the yield surface. From the results obtained, the ultimate loads are predicted at a displacement of 5 mm, 10 % of diameter and 20% of diameter.
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