魏德敏, 吴俊润, 刘泽佳, 招嘉良. 含离子类溶质黏土的C-H-M本构模型[J]. 力学与实践, 2014, 36(1): 29-32. DOI: 10.6052/1000-0879-13-351
引用本文: 魏德敏, 吴俊润, 刘泽佳, 招嘉良. 含离子类溶质黏土的C-H-M本构模型[J]. 力学与实践, 2014, 36(1): 29-32. DOI: 10.6052/1000-0879-13-351
WEI Demin, WU Junrun, LIU Zejia, ZHAO Jialiang. C-H-M MODEL OF CLAY CONTAINING IONIC SOLUTES[J]. MECHANICS IN ENGINEERING, 2014, 36(1): 29-32. DOI: 10.6052/1000-0879-13-351
Citation: WEI Demin, WU Junrun, LIU Zejia, ZHAO Jialiang. C-H-M MODEL OF CLAY CONTAINING IONIC SOLUTES[J]. MECHANICS IN ENGINEERING, 2014, 36(1): 29-32. DOI: 10.6052/1000-0879-13-351

含离子类溶质黏土的C-H-M本构模型

C-H-M MODEL OF CLAY CONTAINING IONIC SOLUTES

  • 摘要: 在水力-力学本构模型基础上,采用化学软化公式引入孔隙水中含盐、碱类等离子类溶质对土体前期固结压力的影响,得到土体的化学-水力-力学耦合本构模型(C-H-M 模型). 根据试验结果对化学软化公式的参数进行数值拟合,通过算例验证了C-H-M 本构模型的有效性

     

    Abstract: Based on the theory of the soil hydro-mechanical coupling constitutive model, a chemical-hydromechanical coupling constitutive model (C-H-M model) of soil is proposed. In this model, the impact of salt and alkali ion solutes of the soil pore water on the preconsolidation pressure is considered by employing a chemical softening equation. A numerical simulation of the parameter in the softening equation is conducted on the basis of the experimental results. The C-H-M coupling constitutive model is validated by conducting a numerical simulation.

     

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