梁靖宇, 路德春, 沈万涛, 齐吉琳. 考虑围压效应的冻土三阶段强度准则[J]. 工程力学, 2023, 40(10): 169-178. DOI: 10.6052/j.issn.1000-4750.2022.01.0096
引用本文: 梁靖宇, 路德春, 沈万涛, 齐吉琳. 考虑围压效应的冻土三阶段强度准则[J]. 工程力学, 2023, 40(10): 169-178. DOI: 10.6052/j.issn.1000-4750.2022.01.0096
LIANG Jing-yu, LU De-chun, SHEN Wan-tao, QI Ji-lin. THREE-STAGE STRENGTH CRITERION FOR FROZEN SOIL INCORPORATING THE CONFINING PRESSURE EFFECT[J]. Engineering Mechanics, 2023, 40(10): 169-178. DOI: 10.6052/j.issn.1000-4750.2022.01.0096
Citation: LIANG Jing-yu, LU De-chun, SHEN Wan-tao, QI Ji-lin. THREE-STAGE STRENGTH CRITERION FOR FROZEN SOIL INCORPORATING THE CONFINING PRESSURE EFFECT[J]. Engineering Mechanics, 2023, 40(10): 169-178. DOI: 10.6052/j.issn.1000-4750.2022.01.0096

考虑围压效应的冻土三阶段强度准则

THREE-STAGE STRENGTH CRITERION FOR FROZEN SOIL INCORPORATING THE CONFINING PRESSURE EFFECT

  • 摘要: 冻土抗剪强度的围压效应是寒区工程建设与冻结法施工工程承载能力分析的基础与前提。随着围压的增大,现有冻土抗剪强度试验结果既有先增大后减小的两阶段试验规律,也有先增大后减小再增大的三阶段试验规律。为描述冻土抗剪强度的特殊规律,该文对土与冰的特性分别进行了分析,认为冻土的抗剪强度所呈现的多阶段发展规律,不仅因为其继承了未冻土的强度特征,还由于冻土中孔隙冰的存在对抗剪强度有特殊的贡献。基于此,该文将冻土抗剪强度分解为反映黏聚摩擦特性的基准强度与由于存在孔隙冰而表现出的特殊贡献强度。通过利用幂函数强度表达式作为冻土的基准强度,并进一步构建描述冻土强化弱化规律的贡献强度,从而发展得出考虑冻土复杂围压效应的三阶段强度准则。对不同类型冻土的两阶段与三阶段试验结果进行的预测表明,所建立的冻土三阶段强度准则能够合理地描述冻土的抗剪强度变化规律。

     

    Abstract: The confining pressure effect of the shear strength of frozen soil is the basis and prerequisite for analysing the bearing capacity of engineering construction in cold regions and the engineering project constructed by the artificial freezing method. As the confining pressure increases, the existing test results of shear strength of the frozen soils show both a two-stage law that increases first and then decreases, and a three-stage law that increases first, then decreases and then increases again. In order to characterize the special development of the shear strength of frozen soils, properties of soils and ice are analysed. It is believed that the shear strength of frozen soil presents a multi-stage development, not only because it inherits the strength characteristics of the soil, but also because the existence of pore ice makes a special contribution to shear strength. On the basis of the above analysis, the shear strength of frozen soil is decomposed into the base strength reflecting the cohesive-friction properties and the special contribution strength of pore ice to the shear strength of frozen soil. By adopting the power function strength expression as the base strength of frozen soil, and further establishing the contributed strength describing the strengthening and weakening rules of frozen soil, a three-stage strength criterion incorporating the confining pressure effect is developed for frozen soils. The comparison between the test results of frozen soils in different types and the predictions shows that the established strength criterion is capable of capturing the variation rule of shear strength of frozen soils.

     

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