纸质出版:2016
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[1]王龙,常素萍,陈国兴.基于Matasovic骨架曲线的有效应力方法在ABAQUS软件中的实现[J].防灾减灾工程学报,2016,36(02):231-238.
王龙, 常素萍, 陈国兴. The Implementation of Dynamic Effective Stress Method Based on Matasovic Constitutive Model in ABAQUS Software[J]. 2016, 36(2): 231-238.
[1]王龙,常素萍,陈国兴.基于Matasovic骨架曲线的有效应力方法在ABAQUS软件中的实现[J].防灾减灾工程学报,2016,36(02):231-238. DOI: 10.13409/j.cnki.jdpme.2016.02.010.
王龙, 常素萍, 陈国兴. The Implementation of Dynamic Effective Stress Method Based on Matasovic Constitutive Model in ABAQUS Software[J]. 2016, 36(2): 231-238. DOI: 10.13409/j.cnki.jdpme.2016.02.010.
将描述土体液化特性的Byrne简化的Martin-Finn振动孔压增量模型与修正Matasovic黏弹性本构模型相结合
以外挂子程序的形式
嵌入到ABAQUS软件中
实现了可液化地基孔压增长过程的数值模拟。以简单应力状态下的可液化地基为例
初步验证了该子程序的动力有效应力分析能力;对某液化场地进行了二维非线性的总应力法和有效应力法对比分析
给出了地表加速度和地表加速度反应谱的对比结果
同时给出了代表性单元的剪应变时程曲线。结果表明
该子程序能够较好地模拟液化场地的振动孔压发展过程
预测场地的地震液化趋势。
Martin-Finn dynamic pore water pressure incremental model simplified by Byrne is used to describe the liquefaction characteristics of the soil
combined with the pore water pressure incremental model and the Matasovic viscoelasticity constitutive model
then we develop the subprogram in ABAQUS software and simulate the growth of vibration pore pressure of the liquefiable site by numerical computation.The sub-program is preliminarily verified the ability of dynamic effective stress analysis through a simple liquefiable site
and the total stress method and the effective stress method are used respectively in a typical liquefiable site analysis
and the comparison of the ground acceleration and acceleration response spectrum and the shear strain time history curve of representative element is given.The above results preliminarily demonstrate the ability of the sub-program to simulate the liquefiable characteristics of the liquefiable site.This indicates that the sub-program developed by the authors can better simulate the development of the vibration pore pressure of the liquefied site
and it can be used to predict the trend of earthquake liquefaction of the site.
Pore water pressure increment model for saturated Nanjing fine sand subject to cyclic loading [J]. Wang Binghui, Chen Guoxing and Jin Dandan Institute of Geotechnical Engineering, Nanjing University of Technology, Nanjing 210009, China. Earthquake Engineering and Engineering Vibration . 2010(04)
饱和南京细砂孔压增量模型的普适性研究 [J]. 王炳辉,陈国兴,李方明. 防灾减灾工程学报 . 2010(05)
非均等固结下饱和砂土孔压增量简化计算公式 [J]. 孙锐,袁晓铭. 岩土工程学报 . 2005(09)
南京河西地区软土场地地震动参数研究 [J]. 陈国兴,杨伟林,严新育. 南京工业大学学报(自然科学版) . 2002(01)
南京河西地区设计地震动研究 [J]. 陈国兴,杨伟林,严新育,宰金珉. 地震工程与工程振动 . 1999(04)
岩土地震工程学[M]. 科学出版社 , 陈国兴, 2007
Damping formulation for nonlinear 1D site response analyses [J] . Camilo Phillips,Youssef M.A. Hashash. Soil Dynamics and Earthquake Engineering . 2009 (7)
Non-linear one-dimensional seismic ground motion propagation in the Mississippi embayment [J] . Youssef M.A. Hashash,Duhee Park. Engineering Geology . 2001 (1)
Evaluation of Settlements in Sands Due to Earthquake Shaking [J] . Kohji Tokimatsu,H. Bolton Seed. Journal of Geotechnical Engineering . 1987 (8)
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