岩土力学 ›› 2025, Vol. 46 ›› Issue (8): 2459-2470.doi: 10.16285/j.rsm.2024.1151CSTR: 32223.14.j.rsm.2024.1151

• 基础理论与实验研究 • 上一篇    下一篇

基于骨架结构指标的连续级配颗粒土峰值抗剪强度模型研究

劳国峰1,阳军生1,谢亦朋2,汤冲1,许志鹏1   

  1. 1. 中南大学 土木工程学院,湖南 长沙 410075;2. 中国海洋大学 工程学院,山东 青岛 266404
  • 收稿日期:2024-09-18 接受日期:2024-11-22 出版日期:2025-08-11 发布日期:2025-08-14
  • 通讯作者: 谢亦朋,男,1994年生,博士(后),讲师,主要从事隧道及地下工程方面的研究。E-mail: Xyp66201@126.com
  • 作者简介:劳国峰,男,1999年生,硕士研究生,主要从事隧道与地下工程方面的研究。E-mail:laoguofeng@foxmail.com
  • 基金资助:
    国家自然科学基金(No. 52378422);中央高校基本科研业务费专项(No. 202513042)。

A peak shear strength model of continuously graded granular soils based on skeleton structure indices

LAO Guo-feng1, YANG Jun-sheng1, XIE Yi-peng2, TANG Chong1, XU Zhi-peng1   

  1. 1. School of Civil Engineering, Central South University, Changsha, Hunan 410075, China; 2. College of Engineering, Ocean University of China, Qingdao, Shandong 266404, China
  • Received:2024-09-18 Accepted:2024-11-22 Online:2025-08-11 Published:2025-08-14
  • Supported by:
    This work was supported by the National Natural Science Foundation of China (52378422) and the Fundamental Research Funds for the Central Universities (202513042).

摘要: 连续级配颗粒土的剪切特性与其级配特征密切相关。为建立密实颗粒土表观级配与其峰值抗剪强度之间的量化关系,首先采用离散元数值模拟方法,探明表观级配变化对于土体内部承载骨架结构特征的影响规律,并引入了承载骨架结构特征的量化表征指标。在此基础上,设计了16种级配下的连续级配颗粒土试样,并开展室内直剪试验,建立连续级配颗粒土骨架结构表征指标与峰值摩擦角之间的量化关系。研究结果表明,颗粒土表观级配的变化会引起土体承载骨架颗粒组成以及承载骨架网络结构的显著改变;以骨架结构主导尺寸ded以及级配不均匀系数Cu作为骨架结构表征指标,均表现出与连续级配颗粒土峰值摩擦角之间的单因素正相关性;以ded和Cu作为影响因素构建峰值摩擦角经验模型,能够精确拟合直剪试验测试所得到峰值摩擦角结果,且在既有研究所公开发表的多类颗粒土中广泛适用。研究结果可为工程实践中散粒岩土介质的强度预测提供计算参考。

关键词: 颗粒土, 土体级配, 抗剪强度, 承载骨架, 离散元法, 直剪试验

Abstract: The shear characteristics of continuously graded granular soils are closely related to their gradation characteristics. This paper aims to clarify the quantitative relationship between the apparent gradation of dense granular soils and their peak shear strength. Firstly, the influence of apparent gradation changes on the soil’s internal skeleton structure characteristics is investigated using a discrete element numerical model. Quantitative indices are introduced to characterize these structural characteristics. Subsequently, 16 continuous gradation granular soil samples are designed, and indoor direct shear tests are conducted to reveal the quantitative relationship between the skeleton structure characterization indices and the peak friction angle of the soils. The research results indicate that changes in the apparent gradation of granular soils can significantly alter the composition and network structure of the bearing skeleton. By using the dominant size of the skeleton structure (ded) and the coefficient of gradation non-uniformity (Cu) as characterization indices, a positive correlation is observed between these indices and the peak friction angle of continuously graded granular soils. An empirical shear strength model is established using ded and Cu as influencing factors, accurately fitting the peak friction angle results obtained from the direct shear tests. This model can be widely applied to various types of granular soils described in existing research. These findings provide a computational reference for predicting the strength of granular geomaterials in engineering practice.

Key words: granular soil, soil gradation, shear strength, skeleton structure, discrete element method, direct shear test

中图分类号: TU 432
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