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非饱和土增湿变形的实用计算方法
引用本文:刘兰兰,李鸿儒,常秋影,李晓乐,王洪宇,赵传海.非饱和土增湿变形的实用计算方法[J].吉林大学学报(地球科学版),2016,46(6):1790-1798.
作者姓名:刘兰兰  李鸿儒  常秋影  李晓乐  王洪宇  赵传海
作者单位:1. 长春建筑学院土木工程学院, 长春 130607; 2. 西安理工大学土木工程学院, 西安 710048
基金项目:国家自然科学基金项目(51479168),吉林省教育厅重点科研项目(吉教科字[2016]第539号)Supported by National Natural Science Foundation of China(51479168),Key Research Project of Jilin Provincial De-partment of Education([2016]539)
摘    要:非饱和土力学研究目前还未进入实用阶段,主要原因在于吸力量测困难。本文提出了用等效吸力代替真实吸力的试验方法。首先以常规静三轴试验得到的原状饱和土以及非饱和土的应力-应变曲线为基础,根据变形等效的原则确定与某一饱和度相当的围压即为等效吸力;然后建立饱和度与等效吸力之间的非线性关系,并验证了该数学公式的正确性;再根据试验结果分析含水量对非饱和土强度的影响,建立了非饱和土的实用抗剪强度公式;最后按照邓肯-张模型的参数整理方法得到了不同饱和度非饱和土的模型参数,探索这些参数随饱和度的变化规律,建立了引入饱和度的非饱和黄土实用非线性模型,并进行了降雨入渗情况下非饱和土增湿变形的计算。结果表明,饱和度最大值为95%,等效吸力最大值为160 kPa,最大水平位移与竖向位移分别为0.6 cm和20.0 cm,均出现在浸水位置。计算结果合理地反映了非饱和土变形的分布趋势,验证了方法的合理性。

关 键 词:非饱和土  等效吸力  三轴试验  变形等效  强度  
收稿时间:2016-02-07

Practical Computation Method of Deformation with Water Content Increasing of Unsaturated Soil
Liu Lanlan,Li Hongru,Chang Qiuying,Li Xiaole,Wang Hongyu,Zhao Chuanhai.Practical Computation Method of Deformation with Water Content Increasing of Unsaturated Soil[J].Journal of Jilin Unviersity:Earth Science Edition,2016,46(6):1790-1798.
Authors:Liu Lanlan  Li Hongru  Chang Qiuying  Li Xiaole  Wang Hongyu  Zhao Chuanhai
Institution:1. School of Civil Engineering, Changchun Architecture & Civil Engineering College, Changchun 130607, China;
2. School of Civil Engineering and Architecture, Xi'an University of Technology, Xi'an 710048, China
Abstract:The research of unsaturated soil mechanics cannot yet reach in practical application because of the difficulty in measuring suction.A new test method to measure suction is suggested in this paper,in which the actual suction is replaced by equivalent suction.The cell pressure in a certain degree of saturation is taken as the equivalent suction according to the principle of deformation equivalence and the stress-strain curves obtained by triaxial compression tests of saturated and unsaturated undisturbed soil.A nonlinear relationship formula between equivalent suction and degree of saturation is presented.
Keywords:unsaturated soils  equivalent suction  triaxial compression tests  equivalence of deformation  strength
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