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利用PLAXIS中的UBC3D-PLM组成律模拟土壤液化 被引量:3
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作者 韩靖 凌文轩 《科学技术创新》 2023年第17期141-145,共5页
本研究主要针对PLAXIS中的UBC3D-PLM液化组成律模式作讨论。通过模拟不排水CDSS试验,对该组成律中的参数对模型的影响做初步的评估。测试过程中发现拟合参数时应该优先考量应力路径和抗液化曲线而不是应力应变曲线,并且需要同时拟合多... 本研究主要针对PLAXIS中的UBC3D-PLM液化组成律模式作讨论。通过模拟不排水CDSS试验,对该组成律中的参数对模型的影响做初步的评估。测试过程中发现拟合参数时应该优先考量应力路径和抗液化曲线而不是应力应变曲线,并且需要同时拟合多组不同CSR条件下的试验而非单一拟合一种CSR下的试验结果。通过模拟和比对大量的离心机试验,对该组成律模拟液化行为的性能作出总结。希望能向使用该组成律模拟液化行为的学者提供参考。 展开更多
关键词 土壤液化 离心机试验 LEAP ubc3d-plm PLAXIS
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Numerical investigation of seismic performance of high modulus columns under earthquake loading 被引量:4
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作者 Selcuk Demir Pelin Ozener 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2019年第4期811-822,共12页
This paper presents the result of two-dimensional fi nite element modeling studies in order to investigate the seismic behavior of high modulus columns in liquefi able soil. Particular attention was paid to the shear ... This paper presents the result of two-dimensional fi nite element modeling studies in order to investigate the seismic behavior of high modulus columns in liquefi able soil. Particular attention was paid to the shear stress reduction mechanism of the high modulus columns and the shear strain distribution between soil and columns during earthquake motion. Numerical analyses were performed using a nonlinear elasto-plastic model in Plaxis 2016. The reliability of the numerical simulations was verifi ed through the results of a centrifuge test model designed to investigate the contribution of high modulus columns in liquefaction mitigation. The capability of numerical simulations was assessed primarily through comparison of predicted acceleration-time histories, pore water pressures, and displacements with the measured counterparts. The results of the numerical analysis showed that the presence of the columns did not reduce seismic shear stresses in the soil when compared to the unimproved soil condition and pure shear behavior between soil and column did not develop as expected in the current design methodology. 展开更多
关键词 LIQUEFACTION high MODULUS COLUMN soil improvement ubc3d-plm
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