期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Analysis of one-dimensional consolidation of soft soils with non-Darcian flow caused by non-Newtonian liquid 被引量:1
1
作者 Kanghe Xie Chuanxun Li +1 位作者 Xingwang Liu Yulin Wang 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE 2012年第3期250-257,共8页
Based on non-Darcian flow caused by non-Newtonian liquid, the theory of one-dimensional (1D) consolidation was modified to consider variation in the total vertical stress with depth and time. The finite difference met... Based on non-Darcian flow caused by non-Newtonian liquid, the theory of one-dimensional (1D) consolidation was modified to consider variation in the total vertical stress with depth and time. The finite difference method (FDM) was adopted to obtain numerical solutions for excess pore water pressure and average degree of consolidation. When non-Darcian flow is degenerated into Darcian flow, a comparison between numerical solutions and analytical solutions was made to verify reliability of finite difference solutions. Finally, taking into account the ramp time-dependent loading, consolidation behaviors with non-Darcian flow under various parameters were analyzed. Thus, a comprehensive analysis of 1D consolidation combined with non-Darcian flow caused by non-Newtonian liquid was conducted in this paper. 展开更多
关键词 one-dimensional (1D) consolidation non-Darcian flow caused by non-Newtonian liquid non-uniform distribution of total vertical stress time-dependent loading
下载PDF
考虑横观各向同性特性的沥青路面动力学分析 被引量:23
2
作者 董泽蛟 刘美丽 +1 位作者 郑好 龚湘兵 《中国公路学报》 EI CAS CSCD 北大核心 2012年第5期18-23,共6页
考虑到沥青混合料、粒状类基层和土质路基等材料各向异性特性对沥青路面动力学的影响,基于对各国研究现状的综合分析,采用有限元数值分析方法,在弹性假设下引入横观各向同性系数,建立沥青路面三维有限元模型;采用ABAQUS进行DLOAD子程序... 考虑到沥青混合料、粒状类基层和土质路基等材料各向异性特性对沥青路面动力学的影响,基于对各国研究现状的综合分析,采用有限元数值分析方法,在弹性假设下引入横观各向同性系数,建立沥青路面三维有限元模型;采用ABAQUS进行DLOAD子程序二次开发,实现非均布竖向移动荷载的数值模拟;并给出移动荷载作用形式、边界条件和材料参数;而后对比分析了移动荷载作用下各向同性和不同横观各向同性特性条件下三向应变场的差异。结果表明:当考虑横观各向同性特性时,目前采用的设计标准偏于危险,基于各向同性特性的路面设计低估了与永久变形和疲劳裂缝相关的应变。 展开更多
关键词 道路工程 沥青路面 有限元模拟 横观各向同性 非均布竖向移动荷载
原文传递
Analysis of 1D consolidation with non-Darcian flow described by exponent and threshold gradient 被引量:11
3
作者 Chuan-xun LI Kang-he XIE Kun WANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2010年第9期656-667,共12页
Numerous experiments have shown that the water flow in fine-grained soils can obey an exponential relationship at small gradients and a linear relationship when the hydraulic gradient exceeds a certain limit. Based on... Numerous experiments have shown that the water flow in fine-grained soils can obey an exponential relationship at small gradients and a linear relationship when the hydraulic gradient exceeds a certain limit. Based on the non-Darcian flow described by exponent and threshold gradient, the theory of 1D consolidation is modified in this paper to consider a linear variation in the vertical total stress with depth and the effect of ramp loading. The numerical solutions were derived in detail by the finite difference method for excess pore water pressure and the average degree of consolidation. Finally, the influence of various parameters on consolidation behavior was investigated. The results show that the rate of consolidation is reduced when non-Darcian flow described by exponent and threshold gradient is adopted in the theory of 1D consolidation. As well the distribution of vertical total stress has a great influence on the dissipation of excess pore water pressure, either for pervious top and pervious bottom (PTPB) or for pervious top and impervious bottom (PTIB). For the case of PTIB, the distribution of vertical total stress in a foundation has a great influence on the rate of consolidation; however, for the case of PTPB, the rate of consolidation is independent of the distribution of vertical total stress. The rate of consolidation is dependent on the ratio of the thickness of a soil layer to the equivalent head of the final average vertical total stress; the greater the value of this ratio, the slower the rate of consolidation. Finally, an increase in construction time reduces the consolidation rate of a foundation. Thus, consolidation behavior of 1D consolidation with non-Darcian flow has been thoroughly acquainted in this paper. 展开更多
关键词 1D consolidation Non-Darcian flow Ramp loading non-uniform distribution of vertical total stress
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部