岩土力学 ›› 2024, Vol. 45 ›› Issue (12): 3694-3704.doi: 10.16285/j.rsm.2024.0200

• 基础理论与实验研究 • 上一篇    下一篇

考虑水力滞后与变形耦合的非饱和土持水曲线模型

陈可1,王琛1,梁发云1,汪中卫2   

  1. 1. 同济大学 地下建筑与工程系,上海 200092;2. 上海市政工程设计研究总院(集团)有限公司,上海 200092
  • 收稿日期:2024-02-16 接受日期:2024-07-16 出版日期:2024-12-09 发布日期:2024-12-05
  • 通讯作者: 王琛,男,1989年生,博士,讲师,主要从事岩土工程、基础工程方面的研究与教学工作。E-mail: cwang33@tongji.edu.cn
  • 作者简介:陈可,男,1993年生,博士研究生,主要从事非饱和土与特殊土力学方面的研究。E-mail: kechen@tongji.edu.cn
  • 基金资助:
    国家重点研发计划(No.2022YFC3803000,No.2016YFC0800200)

A new SWRC model of unsaturated soil considering the coupling of hydraulic hysteresis and volume deformation

CHEN Ke1, WANG Chen1, LIANG Fa-yun1, WANG Zhong-wei2   

  1. 1. Department of Geotechnical Engineering, Tongji University, Shanghai 200092, China; 2. Shanghai Municipal Engineering Design Institute (Group) Co., Ltd., Shanghai 200092, China
  • Received:2024-02-16 Accepted:2024-07-16 Online:2024-12-09 Published:2024-12-05
  • Supported by:
    This work was supported by the National Key R&D Program of China (2022YFC3803000, 2016YFC0800200).

摘要: 土壤持水曲线(soil-water retention curve,SWRC)是非饱和土中基本的物理关系之一。试验研究表明,体积变形不仅会改变土体的孔隙尺寸分布(pore size distribution,PSD),还显著影响孔隙结构的异质性(或非均匀性)。基于土体三相比例的内在关系,提出了在恒定吸力下考虑体积变形对土体饱和度影响的计算公式。为描述水力滞后特性,采用墨水瓶效应揭示了土体体积变形对SWRC滞后特征的影响。假设给定初始孔隙比条件下吸力的增量主要用于改变土体饱和度和克服墨水瓶效应两个方面。在VG模型中引入了可代表孔隙结构变化的异质性因子,以反映体积变形与孔隙结构演化的影响,进而构建了一个考虑水力滞后与变形效应耦合的SWRC模型。提出的模型不仅能反映体积变形对SWRC的影响,也能解释滞回环随孔隙比演化的物理机制。最后,采用了11组试验数据对提出的模型进行验证,结果表明,提出的模型能有效地描述土体变形对SWRC边界曲线以及滞回环演化的影响。

关键词: 非饱和土, 持水特性, 水-力耦合, 水力滞后

Abstract: The soil-water retention curve (SWRC) is one of the fundamental physical relationships for unsaturated soil. Experimental studies indicate that volume deformation not only alters the pore size distribution (PSD) of the soil but also significantly affects the heterogeneity (or non-uniformity) of pore structure. Based on the inherent relationship among the three phases of soil, a calculation formula considering the influence of volume deformation on soil saturation under constant suction is proposed. In terms of hydraulic hysteresis, the ink-bottle effect is employed to reveal the impact of volume deformation on the hysteresis characteristics of SWRC. Assuming that, given the initial void ratio, the increase in suction is mainly consumed in changing the soil saturation and overcoming the ink-bottle effect, a heterogeneity factor representing changes in pore structure is introduced into the VG model. This heterogeneity factor reflects the influence of volume deformation on the evolution of pore structure, thereby constructing a SWRC model that considers the coupling of hydraulic hysteresis and deformation effects. The proposed SWRC model not only captures the impact of volume deformation on SWRC but also explains the physical mechanism underlying the evolution of hysteresis loops with changing void ratio. Finally, the proposed model is validated using eleven sets of experimental data. The results indicate that the proposed model effectively describes the influence of soil deformation on SWRC boundary curves and hysteresis loop evolution.

Key words: unsaturated soil, water retention, hydro-mechanical coupling, hydraulic hysteresis

中图分类号: TU443
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