岩土力学 ›› 2026, Vol. 47 ›› Issue (7): 2273-2284.doi: 10.16285/j.rsm.2025.0742CSTR: 32223.14.j.rsm.2025.0742

• 基础理论与实验研究 • 上一篇    下一篇

压应力下岩石纵波波速响应规律及岩体完整性指数工程适用性修正方法

闻磊1, 2,迟洪锋1,刘大金3,章爱卫3,张飞1,于俊红1,杨治刚1   

  1. 1.石家庄铁道大学 工程力学系,河北 石家庄 050043;2.河北省工程力学基础学科研究中心,河北 石家庄 050043; 3.华北有色工程勘察院有限公司,河北 石家庄 050021
  • 收稿日期:2025-07-16 接受日期:2025-12-10 出版日期:2026-07-13 发布日期:2026-07-08
  • 通讯作者: 迟洪锋,男,2001年生,在读研究生,从事岩石力学方面的研究。E-mail: 1640994315@qq.com
  • 作者简介:闻磊,男,1983年生,博士,副教授,主要从事岩石力学方面的科研和教学工作。E-mail: 37279653@qq.com
  • 基金资助:
    国家自然科学基金区域创新发展联合基金(No. U23A2068)。

Response law of rock longitudinal wave velocity under compressive stress and engineering applicability correction method for rock mass integrity index

WEN Lei1, 2, CHI Hong-feng1, LIU Da-jin3, ZHANG Ai-wei3, ZHANG Fei1, YU Jun-hong1, YANG Zhi-gang1   

  1. 1. Department of Engineering Mechanics, Shijiazhuang Tiedao University, Shijiazhuang, Hebei 050043, China; 2. Hebei Engineering Mechanics Basic Discipline Research Center, Shijiazhuang, Hebei 050043, China; 3. North China Nonferrous Engineering Survey Institute Co, Ltd, Shijiazhuang, Hebei 050021, China
  • Received:2025-07-16 Accepted:2025-12-10 Online:2026-07-13 Published:2026-07-08
  • Supported by:
    This work was supported by the National Natural Science Foundation of China (U23A2068).

摘要:

为探究三维压应力对岩石纵波波速的叠加影响规律,提升岩体完整性指数的测试精度,以砂岩相似材料为研究对象,测定压应力作用下试样轴向及横向纵波波速演化规律。结合裂纹体应变定性表征岩石内部裂隙的演化过程,揭示波速变化的物理本质。根据声弹性效应相关原理,建立岩块纵波波速在三维主应力耦合作用下的修正模型,获得校正三维地应力场条件下的岩体完整性指数方法。研究结果表明,在单轴压缩过程中,轴向及横向纵波波速的变化趋势与岩石破坏的4个阶段呈现相对应的规律性特征。微裂隙的闭合、萌生对于波传播路径的影响,岩石基质的压缩对于刚度的提升,以及塑性阶段新生微裂隙显著的各向异性特征等3个主要因素导致试样在不同阶段轴向和横向纵波波速出现相应变化规律。建立的岩块纵波波速修正模型以及岩体完整性指数修正方法具有比较广阔的工程适用性,不仅能显著提升岩体完整性指数的测量精度,还对工程岩体质量的精细化分级具有重要推动作用。

关键词: 岩体, 地应力, 纵波波速, 岩体完整性指数, 声弹性效应

Abstract:

To investigate the superposition effect of three-dimensional compressive stress on the longitudinal wave velocity of rocks and improve the testing precision of the rock mass integrity index, this study takes sandstone-like materials as the research object and measures the evolution law of axial and transverse longitudinal wave velocities in specimens under compressive stress. The internal crack evolution process is qualitatively characterized by the crack volume strain, revealing the physical essence of the longitudinal wave velocity variations. Based on the principles of the acoustic-elastic effect, a correction model for the longitudinal wave velocity of rock blocks under the coupling effect of three-dimensional principal stresses is established, and a method for correcting the rock mass integrity index under the condition of a corrected three-dimensional in-situ stress field is obtained. The results indicate that the evolution of the longitudinal wave velocity, measured both axially and transversely, corresponds to the four distinct stages of rock mass failure. The corresponding variations in the longitudinal wave velocity across different stages can be attributed to three primary factors: micro-crack closure and initiation altering wave propagation paths, rock mass compaction enhancing stiffness, and the marked anisotropy of newly generated micro-cracks. The proposed correction model for the longitudinal wave velocity and the associated method for revising the rock mass integrity index demonstrate broad engineering applicability. This approach significantly enhances the measurement precision of the rock mass integrity index, thereby facilitating a more refined classification of rock mass quality.

Key words: rock mass, in-situ stress, longitudinal wave velocity, rock mass integrity index, acoustic-elastic effect

中图分类号: TU 458
[1] 苏占东, 唐宁鸣, 尹乾, 陶志刚, 王宏, 甘飞. 加载速率对单裂隙类岩体模型变形特性的影响[J]. 岩土力学, 2026, 47(7): 2311-2323.
[2] 李金秋, 张永双, 张真源, 任三绍, 崔臻. 蚀变黏土夹层对岩体结构面强度影响的力学机制试验研究[J]. 岩土力学, 2026, 47(5): 1699-1712.
[3] 刘国阳, 张森, 叶唐进, 薄雾, 杨灿, 康家硕. 基于非接触测量的危岩体三维非连续变形分析模型构建与失稳破坏机制研究[J]. 岩土力学, 2026, 47(5): 1750-1764.
[4] 夏开宗, 梁万, 司志伟, 杨括宇, 李文婧, 李思翰. 基于岩体波速Hoek-Brown准则的压气储能矿山硐室隆起破坏研究[J]. 岩土力学, 2026, 47(4): 1351-1363.
[5] 孙冠华, 耿璇, 姜长飞, 石露, 张金涛, 江巍. 压缩空气储能电站地下内衬硐库围岩破坏区解析模型及演化规律[J]. 岩土力学, 2026, 47(2): 359-372.
[6] 解佩瑶, 陈卫忠, 赵武胜, 周帅, 秦长坤, 李翔, 蒋华, 何树江. 峰前循环剪切作用下岩体结构面剪切力学性质研究[J]. 岩土力学, 2026, 47(1): 115-129.
[7] 苗日成, 唐贝, 祁飞, 江志安, 崔溦, . 随机裂隙岩体滚刀破岩过程离散元模拟研究[J]. 岩土力学, 2025, 46(S1): 541-552.
[8] 金解放, 熊慧颖, 肖莜丰, 彭孝旺. 岩石超声波对三维地应力的敏感性及传播衰减特性试验研究[J]. 岩土力学, 2025, 46(S1): 183-194.
[9] 蔡玉娟, 蔡静森, 任少文, 刘锴, 陈劲, 李漪, . 岩溶区非均质岩组岩体力学参数快速估计方法研究[J]. 岩土力学, 2025, 46(9): 2749-2762.
[10] 王炳文, 刘臣毅, 康明超, 李乾龙, 杨雷, 周森林, 钱垒. 考虑应力的非闭合裂隙岩体损伤机制及裂纹扩展研究[J]. 岩土力学, 2025, 46(8): 2409-2420.
[11] 李满, 辛昊哲, 刘先珊, 张帆, 胡大伟, 杨福见, . 基于修正相场模型的岩体混合模式破裂数值研究[J]. 岩土力学, 2025, 46(8): 2600-2612.
[12] 徐全, 侯靖, 杨剑, 杨昕光, 倪绍虎, 陈鑫. 基于合成岩体技术的岩质边坡稳定性精细化分析[J]. 岩土力学, 2025, 46(7): 2062-2070.
[13] 马鹏飞, 张艺晨, 袁超, 徐茂洲, 郭小雄, . 软弱层岩体间隔破裂现象的近场动力学方法模拟[J]. 岩土力学, 2025, 46(7): 2296-2307.
[14] 佘磊, 赵阳, 李炎隆, 李东锋, 宋卿, 郑继光, 陈晨, . 基于隧道掘进机掘进参数的现场岩体力学参数快速估计方法[J]. 岩土力学, 2025, 46(5): 1595-1604.
[15] 贺鹏, 杨传馨, 石少帅, 胡杰, 吴威涛, 陈岩, 麻正虎, . 节理岩体隧道块体度解构统一量化分级方法及应用[J]. 岩土力学, 2025, 46(4): 1252-1263.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!