岩土力学 ›› 2026, Vol. 47 ›› Issue (7): 2213-2223.doi: 10.16285/j.rsm.2025.0635CSTR: 32223.14.j.rsm.2025.0635

• 基础理论与实验研究 •    下一篇

考虑微观力学机制的胶结岩土材料各向异性强度解析解

蒋明镜1, 2,陈瑞鑫1,周志豪3   

  1. 1.海南大学 土木建筑工程学院,海南 海口 570288;2.苏州科技大学 土木工程学院,江苏 苏州 215011; 3.浙江理工大学 建筑工程学院,浙江 杭州 310018
  • 收稿日期:2025-06-18 接受日期:2025-09-16 出版日期:2026-07-13 发布日期:2026-07-08
  • 作者简介:蒋明镜,男,1965年生,博士,教授,博士生导师,主要从事岩土材料宏微观关联解析解、微观试验、本构模型和数值分析的研究。 E-mail: mingjing.jiang@usts.edu.cn
  • 基金资助:
    国家自然科学基金重点项目(No.52331010,No.52531010)

Micromechanical mechanism-based analytical solution for anisotropy strength of cemented geo-materials

JIANG Ming-jing1, 2, CHEN Rui-xin1, ZHOU Zhi-hao3   

  1. 1. School of Civil Engineering and Architecture, Hainan University, Haikou, Hainan 570228, China; 2. School of Civil Engineering and Architecture, Suzhou University of Science and Technology, Suzhou, Jiangsu 215011, China; 3. Architecture and Civil Engineering Institute, Zhejiang Sci-Tech University, Hangzhou, Zhejiang 310018, China
  • Received:2025-06-18 Accepted:2025-09-16 Online:2026-07-13 Published:2026-07-08
  • Supported by:
    This work was supported by the National Natural Science Foundation of China (52331010, 52531010).

摘要: 颗粒形状及定向排列所导致的初始各项异性对胶结岩土材料的力学特性影响明显。为提出具有微观力学机制的胶结岩土材料各向异性强度准则,基于规则排列的椭圆颗粒集合体,通过微观力学解析模型建立了规则排列椭圆颗粒集合体的等效格构模型,将颗粒接触特性赋予至对应的格构梁,并采用考虑胶结尺寸影响的非线性微观屈服准则定义了格构梁的破坏。通过对代表性单元的失稳状态进行力学分析,提出了以微观参数(颗粒形状参数、接触参数)和沉积方向角表示的宏观各向异性强度解析解和对应强度参数的宏微观关联解。通过离散单元法(discrete element method,简称DEM)为基础的数值模拟验证了解析解的正确性。研究结果表明,所提出的强度解析式能较好地反映初始各向异性对胶结岩土材料力学特性的影响,宏微观定量关联解析解揭示了颗粒形状、规则排列方式所导致的初始各向异性以及粒间接触特性对宏观力学行为的定量影响规律。

关键词: 初始各向异性, 格构模型, 离散单元法, 宏微观关联

Abstract: The initial anisotropy resulting from particle shape and granular arrangement significantly influences the mechanical behaviors of cemented geo-materials. To establish an anisotropic strength criterion for cemented geo-materials that incorporates micromechanical mechanisms, we utilize regularly arranged elliptical particle assemblies. By employing a micro-analytical model, we develop an equivalent lattice model for these assemblies, assign particle contact properties to the corresponding lattice beams, and apply a size-dependent nonlinear yield criterion to describe beam breakages. Through mechanical analysis of the instability state of the representative volume element, we propose macroscopic strength and corresponding strength parameters expressed in terms of microscopic parameters (particle shape parameters, contact parameters) and the tilting angle. The correctness of the analytical solution is verified through numerical simulations based on the discrete element method. The results demonstrate that the proposed strength analytical formula can effectively reflect the influence of initial anisotropy on the mechanical properties of cemented geo-materials. The macro-micro quantitative correlation analytical solution reveals the quantitative influence of initial anisotropy caused by particle shape and regular arrangement, as well as inter-particle contact characteristics, on macroscopic mechanical behaviors.

Key words: inherent anisotropy, lattice mode, discrete element method, micro–macro relation

中图分类号: TU 432
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