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任意荷载下软土一维大应变非线性固结分析
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One-dimensional Large Strain Nonlinear Consolidation Analysis of Soft Soil under Arbitrary Loading
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    摘要:

    传统固结理论大多基于小应变假定,不适用于大应变软土固结.为了预测任意荷载下大应变软土的固结沉降,基于双对数渗透压缩模型,建立了考虑任意荷载以及非达西渗流的软土一维非线性大应变固结模型,并通过有限差分法推导出固结方程数值解.与解析解以及室内试验进行对比,验证了该数值解的可靠性.在此解答的基础上,分析压缩指数(Ic)、渗透模型参数(α)、非达西参数(m、i1)、加载历时以及任意荷载对土体固结沉降的影响.结果表明:任意荷载下,Ic和α越大,平均固结度越小,超静孔隙水压消散越慢,但软土固结沉降的最终沉降量只与Ic的大小相关,非达西参数m和i1越大,软土层固结沉降过程中达到最终沉降值所需要的时间越长,即固结过程中的相同时刻下土层的沉降就越小;随着施工荷载与指数荷载加载历时增大,土层沉降速率会变慢,而增大循环荷载的荷载周期时,土层沉降速率会变快;此外,相较于其他荷载,循环荷载下的软土固结性状呈现明显的周期性.研究结果进一步丰富了软土地基一维大应变固结理论,为软土地基施工提供理论支持.

    Abstract:

    Traditional consolidation theory mostly based on small-strain assumption is not suitable for soft clay consolidation with large strain. Herein, a one-dimensional nonlinear large-strain consolidation model of soft soils considering non-Darcy flow and arbitrary loads was established based on the double logarithmic permeability compression model to predict the consolidation settlement of large-strain soft soil. The numerical solution to the consolidation equation was derived using the finite difference method. The reliability of this numerical solution was verified through comparison with analytical solutions and laboratory experiments. Based on the solutions, this study analyzes the impact of compression index (Ic), permeation model parameter (α), non-Darcy parameters (m, i1), loading duration, and arbitrary load on soil consolidation settlement. The results indicate that under any arbitrary load, the greater Ic and α result in a smaller average degree of consolidation and the slower dissipation of excess pore water pressure, although the final settlement of soft soil consolidation settlement is only related to the size of the Ic; the greater non-Darcy parameters m and i1 results in the longer time needed to reach the final settlement value during the consolidation settlement process of the soft soil layer, which means that at the same moment in the consolidation process, the settlement of the soil layer is small. As the duration of the construction load and exponential load increases, the settlement rate of the soil layer slows down, while increasing the load cycle of the cyclic load speeds up the rate of soil layer settlement. In addition, compared to other loads, the behavior of soft soil consolidation under cyclic loading shows an obvious periodicity. These findings further enrich the theory of one-dimensional large strain consolidation for soft soil foundations, providing theoretical support for the construction of such grounds.

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曹文贵 ,刘若冰 ?,崔鹏陆 ,李兆帅 ,刘来肥 ,刘阳阳.任意荷载下软土一维大应变非线性固结分析[J].湖南大学学报:自然科学版,2025,52(7):141~151

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  • 在线发布日期: 2025-07-31
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