Water infiltration and soil-water characteristics of compacted loess under applied vertical stress

被引:0
|
作者
ZHANG Lin [1 ,2 ]
LI Tong-lu [1 ,2 ]
LI Ji-heng [1 ,2 ]
LIANG Wei [3 ]
CHEN Cun-li [4 ]
机构
[1] Department of Geological Engineering, Chang'an University
[2] Water Cycle and Geological Environment Observation and Research Station for the Chinese Loess Plateau, Ministry of Education
[3] School of Civil Engineering, Chang'an University
[4] Institute of Geotechnical Engineering, Xi'an University of Technology
基金
中国国家自然科学基金; 中央高校基本科研业务费专项资金资助;
关键词
D O I
暂无
中图分类号
TU444 [黄土与地基];
学科分类号
081401 ;
摘要
Additional stress formed by postconstruction buildings in loess-filling areas affects water infiltration in soil and causes soil deformation.To investigate this effect, under constant water head,vertical infiltration tests on compacted loess with two initial dry densities for different applied vertical stresses were developed using vertical stresscontrollable one-dimensional soil columns. The timehistory curves of vertical deformation, wetting front depth, cumulative infiltration depth, volumetric water content(VWC) and suction were measured, and the soil-water characteristic curves(SWCCs) were determined. The results showed that:(1) the infiltration ability of the soil column weakens with increasing applied vertical stress and initial dry density;(2) vertical deformation increases rapidly at first and then tends to be stable slowly at the consolidation and wetting-induced deformation stage,and is positively correlated with applied vertical stress and is negatively correlated with initial dry density.The stability time of wetting-induced deformation and the corresponding wetting front depth increase with the increase of applied vertical stress, while they decrease obviously when initial dry density increases;(3) the influence of applied vertical stress on soilwater characteristics in soil columns with various initial dry densities is related to the deformation depth of soil column. The VG(Van Genuchten) model is suitable for fitting the SWCCs at different monitoring positions. A normalized SWCC model introducing the applied vertical stress was proposed for each initial dry density using the mathematical relationship between the fitting parameters and the applied vertical stress.
引用
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页码:873 / 885
页数:13
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