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浅埋矩形顶管不良顶进姿态下的地层扰动研究

张振 刘性帅 阳翼繁 晏启祥 黄杰

张振, 刘性帅, 阳翼繁, 晏启祥, 黄杰. 浅埋矩形顶管不良顶进姿态下的地层扰动研究[J]. 岩土工程技术, 2025, 39(6): 874-884. doi: 10.20265/j.cnki.issn.1007-2993.2024-0379
引用本文: 张振, 刘性帅, 阳翼繁, 晏启祥, 黄杰. 浅埋矩形顶管不良顶进姿态下的地层扰动研究[J]. 岩土工程技术, 2025, 39(6): 874-884. doi: 10.20265/j.cnki.issn.1007-2993.2024-0379
Zhang Zhen, Liu Xingshuai, Yang Yifan, Yan Qixiang, Huang Jie. Stratum disturbance of rectangular pipe-jacking in shallow strata under adverse jacking attitude[J]. GEOTECHNICAL ENGINEERING TECHNIQUE, 2025, 39(6): 874-884. doi: 10.20265/j.cnki.issn.1007-2993.2024-0379
Citation: Zhang Zhen, Liu Xingshuai, Yang Yifan, Yan Qixiang, Huang Jie. Stratum disturbance of rectangular pipe-jacking in shallow strata under adverse jacking attitude[J]. GEOTECHNICAL ENGINEERING TECHNIQUE, 2025, 39(6): 874-884. doi: 10.20265/j.cnki.issn.1007-2993.2024-0379

浅埋矩形顶管不良顶进姿态下的地层扰动研究

doi: 10.20265/j.cnki.issn.1007-2993.2024-0379
基金项目: 国家自然科学基金项目(U21A20152)
详细信息
    作者简介:

    张 振,男,1981年生,大学本科,高级工程师。研究方向:隧道与地下工程。E-mail:122732083@qq.com

  • 中图分类号: U45

Stratum disturbance of rectangular pipe-jacking in shallow strata under adverse jacking attitude

  • 摘要: 顶管已经广泛应用于综合管廊、下穿隧道等地下工程的施工,由于地层不均、顶推力设置不当等原因,顶管顶进过程中易产生不良顶进姿态。为研究浅埋顶管在不良顶进姿态下对地层的扰动,依托成资大道综合管廊下穿高速公路工程,分别建立了考虑掌子面偏压、水平偏移轴线、竖向偏移轴线和机头发生扭转4种不良顶进情况的三维有限元分析模型。经三维有限元数值分析,得到以下结论:(1)掌子面偏压顶进对地表沉降位移影响不明显,横向位移,开挖面前方左侧位移稍大于右方,而纵向位移左侧比右侧略小;(2)发生水平偏移时,①号、③号监测点位移在掌子面通过前背离轴线,掌子面通过后朝向轴线;(3)顶进中发生竖直向下的偏移时,掌子面后方地表沉降相较于正常顶进会显著增大,而掌子面前方地表隆起较小;(4)顶进中发生机头扭转时,掌子面后方地表左侧横向位移小于右侧,但沉降位移比右侧更大。

     

  • 图  1  工程平面图

    图  2  管节断面图(单位:mm)

    图  3  数值模型和监测点布置

    图  4  莫尔−库仑本构模型屈服面

    图  5  模拟顶管施工过程

    图  6  地表沉降数值模拟和监测数据对比

    图  7  掌子面偏压地层Mises应力云图

    图  8  掌子面偏压地表位移纵向分布

    图  9  偏移水平轴线不同顶进阶段监测点位移

    图  10  偏移水平轴线地表位移横向分布(Z=18 m)

    图  11  偏移水平轴线地层Mises应力云图

    图  12  偏移水平轴线地表位移纵向分布

    图  13  偏移水平轴线各顶进阶段监测点位移变化

    图  14  偏移水平轴线不同顶进阶段地表各向位移横向分布(Z=18 m)

    图  15  竖向偏离轴线地层Mises应力云图

    图  16  机头扭转地表位移分布

    图  17  机头扭转监测点位移随顶进阶段变化

    图  18  机头扭转地层Mises应力云图

    图  19  机头扭转地表位移纵向分布

    图  20  机头扭转各顶进阶段监测点位移变化

    图  21  地表位移横向分布(Z=18 m)

    表  1  土体物理力学参数

    土层名称 厚度H/m 重度γ/(kN·m−3) 黏聚力c/kPa 内摩擦角φ/(°) 弹性模量E/MPa
    填筑土 3.1 20.0 10 25 4
    粉质黏土Ⅰ 3.0 19.8 27 16 6.4
    粉质黏土Ⅱ 4.7 18.9 9 8 3.0
    强风化泥岩 4.0 22.0 40 20 25
    中等风化泥岩 15.2 24.1 200 28 1500
    下载: 导出CSV
  • [1] 冯金勇, 蒋 凯, 潘 伍, 等. 软土地层大直径曲线顶管隧道受力特性[J]. 科学技术与工程, 2021, 21(6): 2420-2426. (FENG J Y, JIANG K, PAN W, et al. Stress characteristics of large-diameter curved pipe jacking tunnel in soft soil layer[J]. Science Technology and Engineering, 2021, 21(6): 2420-2426. (in Chinese) doi: 10.3969/j.issn.1671-1815.2021.06.041

    FENG J Y, JIANG K, PAN W, et al. Stress characteristics of large-diameter curved pipe jacking tunnel in soft soil layer[J]. Science Technology and Engineering, 2021, 21(6): 2420-2426. (in Chinese) doi: 10.3969/j.issn.1671-1815.2021.06.041
    [2] 崔旭辉, 陈春林, 杨 钊, 等. 软土地层大直径钢筋混凝土顶管上浮失稳研究[J]. 建筑结构, 2024, 54(9): 108-112. (CUI X H, CHEN C L, YANG Z, et al. Research on uplift stability failure of large diameter reinforced concrete pipe jacking in soft soil stratum[J]. Building Structure, 2024, 54(9): 108-112. (in Chinese)

    CUI X H, CHEN C L, YANG Z, et al. Research on uplift stability failure of large diameter reinforced concrete pipe jacking in soft soil stratum[J]. Building Structure, 2024, 54(9): 108-112. (in Chinese)
    [3] 王开军, 张 伟, 王玮鹏, 等. 超浅覆土大断面矩形顶管近距离双线施工地表沉降规律及加固效果评价[J]. 地质与勘探, 2024, 60(1): 121-131. (WANG K J, ZHANG W, WANG W P, et al. Evaluation of surface settlement rule and reinforcement effect in construction of short distance double line of rectangular pipe jacking with large section of ultra-shallow soil cover[J]. Geology and Exploration, 2024, 60(1): 121-131. (in Chinese) doi: 10.12134/j.dzykt.2024.01.013

    WANG K J, ZHANG W, WANG W P, et al. Evaluation of surface settlement rule and reinforcement effect in construction of short distance double line of rectangular pipe jacking with large section of ultra-shallow soil cover[J]. Geology and Exploration, 2024, 60(1): 121-131. (in Chinese) doi: 10.12134/j.dzykt.2024.01.013
    [4] 房 军. 浅埋顶管群下穿运营高铁施工地表变形研究[J]. 科技和产业, 2023, 23(19): 177-181. (FANG J. Research on surface deformation during construction of shallow-buried pipe-jacking group under high-speed railway[J]. Science Technology and Industry, 2023, 23(19): 177-181. (in Chinese) doi: 10.3969/j.issn.1671-1807.2023.19.026

    FANG J. Research on surface deformation during construction of shallow-buried pipe-jacking group under high-speed railway[J]. Science Technology and Industry, 2023, 23(19): 177-181. (in Chinese) doi: 10.3969/j.issn.1671-1807.2023.19.026
    [5] 郑 平, 崔旭辉, 卢海军. 超长距离顶管管道上浮控制实施时机的研究[J]. 中国给水排水, 2023, 39(20): 120-126. (ZHENG P, CUI X H, LU H J. Research on the implementation timing of pipe floating control for ultra-long distance pipe jacking[J]. China Water & Wastewater, 2023, 39(20): 120-126. (in Chinese)

    ZHENG P, CUI X H, LU H J. Research on the implementation timing of pipe floating control for ultra-long distance pipe jacking[J]. China Water & Wastewater, 2023, 39(20): 120-126. (in Chinese)
    [6] 王 浩, 陈 刚, 李 刚. 单站轨迹式长距离顶管导向系统的研发与应用[J]. 现代隧道技术, 2022, 59(S1): 1043-1051. (WANG H, CHEN G, LI G. Development and application of single-station long-distance pipe jacking guidance system by track correction[J]. Modern Tunnelling Technology, 2022, 59(S1): 1043-1051. (in Chinese)

    WANG H, CHEN G, LI G. Development and application of single-station long-distance pipe jacking guidance system by track correction[J]. Modern Tunnelling Technology, 2022, 59(S1): 1043-1051. (in Chinese)
    [7] 杨忠勇, 廖少明, 刘孟波, 等. 软土地层大断面管幕箱涵顶进竖向姿态的理论与实测分析[J]. 隧道建设(中英文), 2020, 40(10): 1448-1454. (YANG Z Y, LIAO S M, LIU M B, et al. Theoretical and practical analysis of vertical jacking attitude of large cross-section pipe-roof box culvert in soft soil stratum[J]. Tunnel Construction, 2020, 40(10): 1448-1454. (in Chinese)

    YANG Z Y, LIAO S M, LIU M B, et al. Theoretical and practical analysis of vertical jacking attitude of large cross-section pipe-roof box culvert in soft soil stratum[J]. Tunnel Construction, 2020, 40(10): 1448-1454. (in Chinese)
    [8] 林秀桂, 曹艳菊, 谢东武. 软土地层长距离大断面矩形顶管姿态控制技术[J]. 现代隧道技术, 2020, 57(S1): 1007-1014. (LIN X G, CAO Y J, XIE D W. Attitude control technology of long-distance large-section rectangular pipe jacking in soft ground[J]. Modern Tunnelling Technology, 2020, 57(S1): 1007-1014. (in Chinese)

    LIN X G, CAO Y J, XIE D W. Attitude control technology of long-distance large-section rectangular pipe jacking in soft ground[J]. Modern Tunnelling Technology, 2020, 57(S1): 1007-1014. (in Chinese)
    [9] 孙 庆, 冯文强, 王志云, 等. 大东湖核心区污水传输支隧工程顶管施工关键技术研究与应用[J]. 隧道建设(中英文), 2021, 41(7): 1218-1224. (SUN Q, FENG W Q, WANG Z Y, et al. Key construction techniques for pipe jacking in branches of sewage tunnels in Dadong lake core area[J]. Tunnel Construction, 2021, 41(7): 1218-1224. (in Chinese)

    SUN Q, FENG W Q, WANG Z Y, et al. Key construction techniques for pipe jacking in branches of sewage tunnels in Dadong lake core area[J]. Tunnel Construction, 2021, 41(7): 1218-1224. (in Chinese)
    [10] 杨 仙, 肖宇锋, 崔杰平, 等. 穿越软硬不均地层的过河钢顶管施工案例分析[J]. 中国给水排水, 2021, 37(12): 160-163. (YANG X, XIAO Y F, CUI J P, et al. Case study of steel pipe jacking across river through the hard-soft heterogeneous stratum[J]. China Water & Wastewater, 2021, 37(12): 160-163. (in Chinese)

    YANG X, XIAO Y F, CUI J P, et al. Case study of steel pipe jacking across river through the hard-soft heterogeneous stratum[J]. China Water & Wastewater, 2021, 37(12): 160-163. (in Chinese)
    [11] 黄 喆, 燕庆德, 邵震宇, 等. 基于双相机标靶的直线顶管掘进机导向方法[J]. 激光与光电子学进展, 2022, 59(4): 0433001. (HUANG Z, YAN Q D, SHAO Z Y, et al. Guiding method of linear pipe jacking machine based on dual camera target[J]. Laser & Optoelectronics Progress, 2022, 59(4): 0433001. (in Chinese)

    HUANG Z, YAN Q D, SHAO Z Y, et al. Guiding method of linear pipe jacking machine based on dual camera target[J]. Laser & Optoelectronics Progress, 2022, 59(4): 0433001. (in Chinese)
    [12] 张 峰, 罗 利, 陈 奇. 机械顶管下穿河流时土体变形特征研究[J]. 科技和产业, 2024, 24(4): 254-261. (ZHANG F, LUO L, CHEN Q. Research on soil deformation characteristics of mechanical pipe jacking during river crossing[J]. Science Technology and Industry, 2024, 24(4): 254-261. (in Chinese)

    ZHANG F, LUO L, CHEN Q. Research on soil deformation characteristics of mechanical pipe jacking during river crossing[J]. Science Technology and Industry, 2024, 24(4): 254-261. (in Chinese)
    [13] 王炳华, 李文庆, 王中华, 等. 顶管施工对周边环境的扰动机制研究[J]. 岩土工程技术, 2024, 38(6): 672-679. (WANG B H, LI W Q, WANG Z H, et al. Disturbance mechanism of pipe-jacking construction on surrounding environment[J]. Geotechnical Engineering Technique, 2024, 38(6): 672-679. (in Chinese) doi: 10.3969/j.issn.1007-2993.2024.06.006

    WANG B H, LI W Q, WANG Z H, et al. Disturbance mechanism of pipe-jacking construction on surrounding environment[J]. Geotechnical Engineering Technique, 2024, 38(6): 672-679. (in Chinese) doi: 10.3969/j.issn.1007-2993.2024.06.006
    [14] 袁森林. 小净距三车道矩形顶管隧道施工扰动实测分析[J]. 岩土工程技术, 2024, 38(2): 175-180. (YUAN S L. Analysis of construction disturbance measurement of three lane rectangular pipe jacking tunnel with small clear distance[J]. Geotechnical Engineering Technique, 2024, 38(2): 175-180. (in Chinese) doi: 10.3969/j.issn.1007-2993.2024.02.009

    YUAN S L. Analysis of construction disturbance measurement of three lane rectangular pipe jacking tunnel with small clear distance[J]. Geotechnical Engineering Technique, 2024, 38(2): 175-180. (in Chinese) doi: 10.3969/j.issn.1007-2993.2024.02.009
    [15] 李 辉, 杨贵阳, 宋战平, 等. 矩形顶管施工引起土体分层变形计算方法研究[J]. 地下空间与工程学报, 2019, 15(5): 1482-1489. (LI H, YANG G Y, SONG Z P, et al. Study on calculation method of soil delamination deformation caused by rectangular pipe jacking construction[J]. Chinese Journal of Underground Space and Engineering, 2019, 15(5): 1482-1489. (in Chinese)

    LI H, YANG G Y, SONG Z P, et al. Study on calculation method of soil delamination deformation caused by rectangular pipe jacking construction[J]. Chinese Journal of Underground Space and Engineering, 2019, 15(5): 1482-1489. (in Chinese)
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出版历程
  • 收稿日期:  2024-08-19
  • 修回日期:  2024-10-31
  • 录用日期:  2025-01-02
  • 网络出版日期:  2025-12-08
  • 刊出日期:  2025-12-08

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