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国家自然科学基金(51078019)

作品数:12 被引量:129H指数:7
相关作者:赵成刚蔡国庆刘艳李舰韦昌富更多>>
相关机构:北京交通大学中国科学院武汉岩土力学研究所中国水利水电科学研究院更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划北京市自然科学基金更多>>
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非饱和土的修正SFG模型研究被引量:5
2012年
从非饱和土的有效应力出发,对SFG模型进行了修正,将饱和度的影响引入到了模型当中,使得模型在不增加参数的同时可以反映更多的实验现象。首先简单介绍了SFG模型。然后以功的表达式推导得到的非饱和土有效应力为基础给出了非饱和土的体变方程,在饱和阶段该方程可以自动退化为饱和土的体变方程。结合土水特征曲线方程,推导得到了修正模型的加载湿陷屈服面方程,由此得到的屈服面方程不仅是吸力的函数,同时也是饱和度的函数。屈服面可以连续光滑地从饱和状态过渡到非饱和状态,并可以预测干燥时出现塑性变形的现象。此外它还可以反映SFG模型无法反映的现象,即考虑饱和度的影响,对于吸力相同饱和度不同的土样,给出的屈服应力将不同。最后利用已有试验数据对修正模型进行了验证,说明了修正模型与试验结果是相符的。
刘艳赵成刚韦昌富
关键词:非饱和土饱和度有效应力
考虑温度影响的非饱和土变形特性被引量:3
2011年
随着高放核废物地下处置库建设、地热资源开发利用、节能建筑以及二氧化碳地下封存等一批现代岩土工程的发展,使得温度对非饱和土基本力学特性影响的研究成为当前国际上研究的热点问题.利用非饱和土中功的表达式,并考虑温度对非饱和土基本性质的影响,选取平均土骨架应力、修正吸力及温度作为热力学中广义力的状态变量,选取土骨架应变、饱和度及熵作为与广义力变量共轭的广义流状态变量.基于土体非线性多场耦合模型理论框架,利用现有的实验研究成果,提出了一个非等温条件下非饱和土弹塑性本构模型,对温度影响下的非饱和土变形特性进行了分析.应用所建立的模型,在各向同性条件下就吸力和温度对非饱和土变形性质的影响进行了预测和分析,并与已有的实验结果进行了比较.比较结果表明了所提模型的合理性.
蔡国庆赵成刚刘艳李舰
关键词:非饱和土温度影响本构模型
考虑气相压力变化和偏应力影响的非饱和土本构模型被引量:7
2011年
基于连续介质土力学的本构模型框架,提出了一个三轴应力状态下的非饱和土本构模型。与非饱和土中的双应力变量不同,根据非饱和土功的表达式,选择广义有效应力、修正吸力和气体压力作为模型的应力状态变量。模型中考虑了气相压力变化对土体变形的影响,给出了固-液-气三相耦合的本构方程。固相采用了非相关联流动法则,并在固相硬化方程中考虑了液相和气相的影响。液相方程利用土水特征曲线描述,并考虑了塑性体应变的影响。气相方程的建立利用了Boyle定律和Henry定律,给出了受固相和液相变形影响的气相方程。最后建立了非饱和土弹塑性增量方程。利用已有的试验数据对模型进行了验证,并将考虑气相影响与未考虑气相影响的预测结果进行了对比。
刘艳赵成刚蔡国庆李舰
关键词:非饱和土本构方程
地震荷载作用下非饱和土边坡稳定性数值模拟被引量:7
2013年
以非饱和土土水特征曲线为依据,建立了可同时考虑基质吸力与体积含水率影响的非饱和土强度公式,进而以非饱和土广义黏聚力和饱和土的内摩擦角为强度参数,将强度折减有限元理论推广到了非饱和土边坡的稳定性分析中。在短时地震荷载作用时间段内不考虑非饱和土含水率(或饱和度)与基质吸力变化的前提下,采用黏弹性人工边界模拟地基辐射阻尼的影响,建立了基于静动力有限元的非饱和土边坡地震稳定性简化分析方法,并以有限元数值计算、关键点相对位移时程曲线是否收敛和塑性区分布分别探讨了非饱和土边坡的地震稳定性。分析结果显示基质吸力虽然对非饱和土边坡的静力稳定性影响显著,但地震作用力仍然在边坡的地震稳定性分析中起主导作用。
傅方赵成刚李伟华张卫华
关键词:非饱和土边坡土水特征曲线基质吸力强度折减有限元地震
A nonlinear multi-field coupled model for soils被引量:15
2011年
A nonlinear multi-field coupled model for multi-constituent three-phase soils is derived by using the hybrid mixture theory. The balance equations with three levels (constituents, phases and the whole mixture soil) are set up under the assumption that soil is composed of multi-constituent elastic-plastic solid skeleton (which is different from the linearization method) and viscous liquid and ideal gas. With reasonable constitutive assumptions in such restrictive conditions as the principles of determinism, equipresence, material frame-indifference and the compatible principle in continuum mechanics, a theoretical framework of constitutive relations modeling three-phase soil in both non-equilibrium and equilibrium states is established, thus the closed field equations are formed. In the theoretical framework, the concept of effective generalized thermodynamic forces is introduced, and the nonlinear coupling constitutive relations between generalized dissipation forces and generalized flows within the system at nonequilibrium state are also presented. On such a basis, four special coupling relations, i.e., solid thermal elastic-plastic constitutive relation, liquid visco-elastic-plastic constitutive relation, the generalized Fourier’s law, and the generalized Darcy’s law are put forward. The generalized or nonlinear results mentioned above can degenerate into the linear coupling results given by Bennethum and Singh. Based on a specific dissipation function, the concrete form of generalized Darcy’s law is deduced, which may degenerate into the traditional form of Darcy’s law by neglecting the influence of skeleton deformation and temperature. Without considering temperature and other coupling effects, the nonlinear coupled model in this paper can degenerate into a soil elastic-plastic constitutive model.
CAI GuoQingZHAO ChengGangLIU YanLI Jian
关键词:NON-LINEAR
Volume change behavior of unsaturated soils under non-isothermal conditions被引量:16
2011年
With the development of modern geotechnical engineering practices such as the construction of high level radioactive waste repositories, exploitation and utilization of geothermal resources, energy-saving buildings and underground storage of CO 2 , research into the influence of temperature on the basic mechanical properties of unsaturated soils has become an important issue internationally. By using the work expression and considering the influence of temperature on the basic properties of unsaturated soils, the average soil skeleton stress, modified suction and temperature were selected as state variables of generalized forces in thermodynamics and the soil skeleton strain, saturation and entropy were chosen as state variables of generalized flows conjugate to the variables of generalized forces. Based on the nonlinear multi-field coupled model and by using existing experimental results, an elastic-plastic constitutive model of unsaturated soils under non-isothermal conditions was developed to analyze the influence of temperature on the deformation properties of unsaturated soils. The model was used to predict and analyze the influence of suction and temperature on the deformation properties of unsaturated soils under isotropic conditions, and was successfully verified using experimental results.
CAI GuoQing ZHAO ChengGang LIU Yan LI Jian
关键词:非饱和土弹塑性本构模型体积状态变量
Constitutive modeling for unsaturated soils considering gas hardening effect被引量:9
2011年
The influence of gases on unsaturated soils is discussed in the paper.First,the selection of stress state variables is discussed.It is shown that gas pressure as well as generalized effective stress and modified suction are required to construct a constitutive model of an unsaturated soil.The deformation mechanisms of solid,liquid and gas phases in soils are then investigated.It is realized that the deformation of gas phase interacts with the deformations of the other two phases in soils.Gas laws are used to describe the gas behavior.Similar to the other two phases in soil,the change of gas volume can be divided into an elastic part and a plastic part, and the latter part is then introduced to the soil hardening equation to reflect the impact of the gas on the soil.Then,a simple elasto-plastic model considering the gas effect for isotropic states is developed.Finally,the model predictions are given and compared with existing experimental data.A good agreement between them is found.Comparisons of the predictions between our model and Wheeler’s model are also performed.
LIU YanZHAO ChengGangCAI GuoQingHUANG Lu
关键词:气体压力本构模型非饱和土弹塑性模型
NUMERICAL SIMULATION OF TUNNELS CONSIDERING TOPOGRAPHIC EFFECTS UNDER EARTHQUAKE
<正>Wave reflection,wave scattering and site amplification effects can cause the ground motion vary spatially.B...
Fang FU~1
关键词:TUNNELSEARTHQUAKE
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变形对土水特征曲线影响规律模拟研究被引量:20
2011年
建立预测土水特征曲线随变形变化规律的模型是研究变形对非饱和土渗透系数影响的基础,它也可为建立考虑水力和力学耦合的非饱和土本构模型奠定基础。以概率论为基础,通过引入孔隙尺寸分布函数,建立了土中的平均孔隙半径与孔隙率之间的函数关系,并以此为基础得到了一个能够模拟孔隙率对土水特征曲线的影响规律的经验模型。通过计算和试验结果的对比分析,验证了这一模型的合理性。
张雪东赵成刚刘艳蔡国庆
关键词:概率论土水特征曲线孔隙率
一种预测不同温度下非饱和土相对渗透系数的间接方法被引量:12
2011年
高放核废料地下处置、城市供热管道及埋地高压电缆等工程建设的进行,使得考虑温度影响的非饱和土渗透性能越来越受到人们的重视。在考虑温度效应的非饱和土土-水特征曲线研究基础上,结合利用土-水特征曲线预测非饱和土相对渗透系数的方法,建立了一种预测不同温度下非饱和土相对渗透系数的间接方法。所建立的表达式是针对土-水特征曲线的整个吸力范围,从而使得其在应用上更具一般意义。利用MX-80班脱土和黄土土样的试验结果,对不同温度下相对渗透系数随吸力的变化进行了预测,得到了令人满意的结果。
蔡国庆赵成刚刘艳
关键词:非饱和土温度影响土-水特征曲线
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