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冻结盐渍土三轴剪切试验过程中的损伤及压融分析
引用本文:高娟,赖远明. 冻结盐渍土三轴剪切试验过程中的损伤及压融分析[J]. 岩土工程学报, 2018, 40(4): 707-715. DOI: 10.11779/CJGE201804015
作者姓名:高娟  赖远明
作者单位:1. 中国科学院西北生态资源环境研究院,甘肃 兰州 730000;2. 中国科学院大学,北京 100000;
基金项目:国家自然科学基金项目(41230630); 中国科学院前沿科学重点研究项目(QYZDY-SSW-DQC015)
摘    要:三轴剪切过程中损伤及压融等力学性质对冻结盐渍土的强度及变形影响显著。通过对-15℃德令哈含盐砂土进行一系列的三轴剪切循环试验及CT扫描试验,分析冻结盐渍土在三轴试验过程中的损伤演化以及压融量变化规律。研究发现,在三轴剪切中损伤变量随静水压力的变化而改变,在本文条件下当静水压力在1~12 MPa之间时,损伤变量随围压的增加而增加,当静水压力超过12 MPa时,损伤变量反而呈现减小趋势。同时,定义压融阈值p_s以及压融量达到最大值时对应的静水压力值p_m,研究表明:当静水压力小于p_s时,试样内部几乎不存在压融现象;当静水压力大于p_s且小于p_m时试验内部的压融量可用二次函数描述;当静水压力超过p_m时,试样中的压融量达到最大值λ_m,且压融极值点与损伤变量极值点对应的静水压力值基本一致。

关 键 词:冻结盐渍土  三轴剪切试验  损伤  压融分析  
收稿时间:2017-03-15

Damage and pressure melting analysis of frozen saline soils in process of triaxial compression tests
GAO Juan,LAI Yuan-ming. Damage and pressure melting analysis of frozen saline soils in process of triaxial compression tests[J]. Chinese Journal of Geotechnical Engineering, 2018, 40(4): 707-715. DOI: 10.11779/CJGE201804015
Authors:GAO Juan  LAI Yuan-ming
Affiliation:1. Northwest Institute of Eco-Environment and Resources, CAS, Lanzhou 730000, China;2. University of Chinese Academy of Sciences, Beijing 100000, China;
Abstract:The mechanical properties, such as damage and pressure melting, have significant influences on the strength and deformation behaviors of the frozen saline soils in the process of triaxial compression tests. In order to analyze the change laws of damage evolution and pressure melting variation, a series of triaxial shear loading-unloading-reloading tests and CT scanning tests are carried out for Delhi frozen saline soils at -15℃. The results show that the damage variable is influenced by hydrostatic pressure. When the hydrostatic pressure is between 1 MPa and 12 MPa, the damage variable increases with pressure, and when hydrostatic pressure is more than 12 MPa, with the increase of the hydrostatic pressure, the damage variable shows a decreasing trend. Meanwhile, the definitions of pressure melting threshold${{p}_{text{s}}}$and the corresponding hydrostatic pressure value${{p}_{text{m}}}$when the pressure melting variable reaches the maximum value are given. The pressure melting is hardly existent in the sample when pressure is less than the threshold. When the pressure is between${{p}_{text{s}}}$and${{p}_{text{m}}}$, the pressure melting variables can be expressed by the parabola equation. And if the hydrostatic pressure exceeds${{p}_{text{m}}}$, the pressure melting variable reaches the maximum value${{lambda }_{text{m}}}$. Besides, the hydrostatic pressure corresponding to the maximum value of the pressure melting variables almost equals the hydrostatic pressure when the damage variable gets its maximum.
Keywords:frozen saline soil  triaxial compression test  damage  pressure melting analysis  
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