高卵石含量地层盾构隧道施工围岩扰动特征试验研究
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1.南阳理工学院 土木工程学院;2.北京建筑大学 土木与交通工程学院;3.北京工业大学 建筑工程学院

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TU411

基金项目:

国家自然科学基金(51908023,52025084);北京市自然科学基金项目(8232007);北京市教委科研项目(KM202310016013);河南省高等学校重点科研项目(24A560015);南阳市科技发展计划项目(23KJGG246)


Experimental study on the ground disturbance characteristics during shield tunneling in high cobble content strata
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Affiliation:

1.School of Civil Engineering, Nanyang Institute of Technology;2.School of Civil and Transportation Engineering, Beijing University of Civil Engineering and Architecture;3.College of Architecture and Civil Engineering, Beijing University of Technology

Fund Project:

National Natural Science Foundation of China (No. 51908023, No. 52025084); Natural Science Foundation of Beijing (No. 8232007); Research Project of Beijing Municipal Commission of Education (KM202310016013); Key Scientific Research Projects for Higher Education of Henan Province (No. 24A560015); Scientific and Technological Project of Nanyang City (No. 23KJGG246)

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    摘要:

    相对于低卵石含量地层,高卵石含量地层具有颗粒孔隙大、颗粒间点对点接触等特点,隧道施工扰动时地层中大颗粒骨架结构更易遭到破坏,从而处于不稳定状态。本文依托典型盾构隧道工程,采用可实现刀盘旋转、螺旋出土等功能的模型盾构机,开展高卵石含量地层(70%)浅埋隧道(1.0 D)和深埋隧道(2.0 D)盾构掘进模型试验,并从盾构掘进力学参数、地表沉降曲线以及开挖面稳定性等角度,探究高卵石含量地层盾构隧道施工围岩扰动特征。试验结果表明:对于高卵石含量地层,在相同的盾构掘进参数下,浅埋隧道和深埋隧道螺旋出土器扭矩相差不大,但浅埋隧道刀盘扭矩稳定值小于深埋隧道;在两种埋深条件下,地表沉降曲线关于隧道中心线均呈非对称分布,其偏心位置与刀盘旋转方向相关;当刀盘顺时针旋转时,沉降曲线对称轴位于掘进方向左侧;浅埋隧道和深埋隧道开挖面均呈整体失稳破坏模式,且地层塌陷区域均包含刀盘前方土体和后方土体;在两种埋深条件下,采用螺旋出土和刀盘后退方式得到的地表塌陷形态均为椭圆状,且椭圆长轴方向与盾构掘进方向垂直;出土破坏得到的地表塌陷范围大于后退破坏方式,其与产生的地层损失密切相关。

    Abstract:

    Compared with ground with low cobble content, a high cobble content strata has characteristics such as large particle pores and point-to-point contact between particles, etc. During shield tunnelling, the large-grained skeleton structure in such strata is more prone to damage, leading to an unstable state. Based on a typical shield tunnel project, a model shield machine that can achieve functions such as cutterhead rotation and spiral discharging soil is used to conduct model test. Shield model tests all were achieved for both shallow tunnel (1.0 D) and deep tunnel (2.0 D) in high cobble content strata (rock content of 70%). Then, from the aspects of shield tunneling mechanical parameters, ground surface settlement curves and excavation face stability, the ground disturbance characteristics of shield tunnelling in high cobble content strata are analyzed. Test results show that for the high cobble content strata, under the same shield advancement parameters, the screw excavator torque shows little difference between shallow and deep tunnels. However, the stable value of cutterhead torque in shallow tunnel is less than that in deep tunnel. Under these two ground conditions, the ground surface settlement curves all show an asymmetric distribution about the tunnel centerline, and the eccentric position is related to the rotation direction of the cutterhead. When the cutterhead rotates clockwise, the symmetry axis of the settlement curve is located on the left side of the advancing direction. The failure modes of excavation face in both shallow and deep tunnels all present to be global instability, with collapse zones encompassing soil both ahead of and behind the cutterhead. Besides, the ground collapse morphologies induced by discharging soil or cutterhead retraction are all elliptical, with the major axis perpendicular to the shield advancement direction. However, the extent of ground collapse caused by discharging soil is larger than that induced by retraction failure, which is closely related to the corresponding ground loss.

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  • 收稿日期:2025-01-14
  • 最后修改日期:2025-05-02
  • 录用日期:2025-06-01
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