期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
基于PM4Sand塑性模型的土体液化侧移计算分析
1
作者 杨彦鑫 陈文龙 +1 位作者 马建林 林大富 《铁道建筑》 北大核心 2018年第11期107-111,120,共6页
采用PM4Sand塑性模型预测土体因地震而液化引起的侧移量。利用有限差分程序,引入依据临界状态理论、由应力控制的砂土屈服面塑性模型模拟可液化土,对既有液化场地进行分析,预测由地震引起的场地液化侧移。根据既有场地的地质勘察资料和... 采用PM4Sand塑性模型预测土体因地震而液化引起的侧移量。利用有限差分程序,引入依据临界状态理论、由应力控制的砂土屈服面塑性模型模拟可液化土,对既有液化场地进行分析,预测由地震引起的场地液化侧移。根据既有场地的地质勘察资料和相关地震波,获取场地输入地震波和可液化土的动力触探值,确定可液化土的本构模型参数,再根据摩尔-库伦破坏准则设置非液化土的相关参数。监测场地自由面的液化侧移,记录可液化土的孔隙水压力,并将地表加速度时程与初始输入地震波加以对比。结果表明:在输入地震波作用下,场地发生液化且产生侧移,所得预测值较实测值大;场地对地震输入有一定的放大作用; PM4Sand砂土模型适用于实际工程的液化侧移预测。 展开更多
关键词 地基基础 可液化砂土 数值计算 液化侧移 pm4sand塑性模型
下载PDF
An SPH Framework for Earthquake-Induced Liquefaction Hazard Assessment of Geotechnical Structures
2
作者 Sourabh Mhaski G.V.Ramana 《Computer Modeling in Engineering & Sciences》 SCIE EI 2025年第1期251-277,共27页
Earthquake-induced soil liquefaction poses significant risks to the stability of geotechnical structures worldwide.An understanding of the liquefaction triggering,and the post-failure large deformation behaviour is es... Earthquake-induced soil liquefaction poses significant risks to the stability of geotechnical structures worldwide.An understanding of the liquefaction triggering,and the post-failure large deformation behaviour is essential for designing resilient infrastructure.The present study develops a Smoothed Particle Hydrodynamics(SPH)framework for earthquake-induced liquefaction hazard assessment of geotechnical structures.The coupled flowdeformation behaviour of soils subjected to cyclic loading is described using the PM4Sand model implemented in a three-phase,single-layer SPH framework.A staggered discretisation scheme based on the stress particle SPH approach is adopted to minimise numerical inaccuracies caused by zero-energy modes and tensile instability.Further,non-reflecting boundary conditions for seismic analysis of semi-infinite soil domains using the SPH method are proposed.The numerical framework is employed for the analysis of cyclic direct simple shear test,seismic analysis of a level ground site,and liquefaction-induced failure of the Lower San Fernando Dam.Satisfactory agreement for liquefaction triggering and post-failure behaviour demonstrates that the SPH framework can be utilised to assess the effect of seismic loading on field-scale geotechnical structures.The present study also serves as the basis for future advancements of the SPH method for applications related to earthquake geotechnical engineering. 展开更多
关键词 EARTHQUAKE SEISMIC LIQUEFACTION stress particle pm4sand smoothed particle hydrodynamics(SPH)
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部