Monitoring of over cutting area and lubrication distribution in a large slurry pipe jacking operation

被引:33
|
作者
Khazaei, Saeid [1 ]
Shimada, Hideki [1 ]
Kawai, Takashi [1 ]
Yotsumoto, Junichi [2 ]
Matsui, Kikuo [1 ]
机构
[1] Kyushu Univ, Dept Earth Resources Engn, Fukuoka 8128581, Japan
[2] Kyowa EXEO Co, Tokyo, Japan
关键词
borehole camera; GPR system; over cutting area; slurry pipe jacking; thrust;
D O I
10.1007/s10706-004-5436-1
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
Slurry pipe jacking was firmly established as a special method for the non-disruptive construction of the underground pipelines of sewage systems. Pipe jacking, in its traditional form, has occasionally been used for short railways, roads, rivers, and other projects. Basically the system involves the pushing or thrusting of concrete pipes into the ground by a number of jacks. In slurry pipe jacking, during the pushing process, mud slurry and lubricant are injected into the face and the over cutting area that is between the concrete pipes and the surrounding soil. Next, the slurry fills voids and the soil stabilizes due to the created slurry cake around the pipes. Fillings also reduce the jacking force or thrust during operation. When the drivage and pushing processes are finished, a mortar injection into the over cutting area is carried out in order to maintain permanent stability of the surrounding soil and the over cutting area. Successful lubrication around the pipes is extremely important in a large diameter slurry pipe jacking operation. Control of lubrication and gaps between pipes and soil can prevent hazards such as surface settlement and increases in thrust. Also, to find voids around the pipes after the jacking process, in order to inject mortar for permanent stabilizing, an investigation around the pipes is necessary. To meet these aims, this paper is concerned with the utilization of known methods such as the GPR (Ground Penetrating Radar) system and borehole camera to maintain control of the over cutting area and lubricant distribution around the pipes during a site investigation. From this point of view, experiments were carried out during a tunnel construction using one of the largest cases of slurry pipe jacking in Fujisawa city, Japan. The advantages and disadvantages of each system were clarified during the
引用
收藏
页码:735 / 755
页数:21
相关论文
共 27 条
  • [1] Lubrication property requirements for injection into over-cutting area using extra-large-diameter slurry pipe jacking
    Department of Earth Resources Engineering, Kyushu University, 744 Motooka, Nishi-ku Fukuoka 819-0395, Japan
    不详
    Int. Soc. Trenchless Technol. - No-Dig Int. Conf. Exhibit., No-Dig MOSCOW, (296-300):
  • [2] Behavior of lubricant injection into over-cutting area for slurry pipe jacking
    Department of Earth Resources Engineering, Kyushu University, Fukuoka, Japan
    不详
    不详
    1600, 350-357 (2006):
  • [3] Over-cutting area control by using RADAR application in large diameter slurry pipe jacking method
    Khazaei, S
    Shimada, H
    Matsui, K
    Kawai, T
    Yotsumoto, J
    Contribution of Rock Mechanics to the New Century, Vols 1 and 2, 2004, : 633 - 638
  • [4] Research on the Slurry for Long-Distance Large-Diameter Pipe Jacking in Expansive Soil
    Yang, Xian
    Liu, Yang
    Yang, Chao
    ADVANCES IN CIVIL ENGINEERING, 2018, 2018
  • [5] Estimation of thrust in the construction of underground pipeline systems in a curved area using slurry pipe-jacking
    Shimada, H
    Inoue, M
    Sasaoka, T
    Kubota, S
    Matsui, K
    FRONTIERS OF ROCK MECHANICS AND SUSTAINABLE DEVELOPMENT IN THE 21ST CENTURY, 2001, : 423 - 426
  • [6] Formulation optimization and performance analysis of the thixotropic slurry for large-section rectangular pipe jacking in anhydrous sand
    Liu, Shuo
    Zhang, Bin
    Zhang, Xue
    Fan, Dongsheng
    Wang, Hanxun
    Yu, Ming
    CONSTRUCTION AND BUILDING MATERIALS, 2022, 357
  • [7] Ground-penetrating radar measurement of the distribution of thixotropic slurry behind large-diameter segments in long-distance pipe-jacking construction
    Zhao, Yonghui
    Wu, Jiansheng
    Xie, Xiongyao
    Feng, Kunwei
    Zeng, Chenchao
    NEAR SURFACE GEOPHYSICS, 2016, 14 (02) : 171 - 181
  • [8] PERFORMANCE OF A GUIDED WAVE PIPE MONITORING SYSTEM OVER EXTENDED PERIODS OF FIELD OPERATION
    Mariani, Stefano
    Heinlein, Sebastian
    Vogt, Thomas
    Cawley, Peter
    MATERIALS EVALUATION, 2023, 81 (08) : 36 - 46
  • [9] Numerical simulation and field monitoring on a large cross-section pipe-jacking underpass traversing existing metro tunnels
    Liu, Bo
    Zhang, Dingwen
    Liu, Songyu
    Qin, Yunjun
    Yanshilixue Yu Gongcheng Xuebao/Chinese Journal of Rock Mechanics and Engineering, 2017, 36 (11): : 2850 - 2860
  • [10] A Supershallow Buried Large-Span Rectangular Pipe Jacking Tunnel Undercrossing an Expressway: Construction Method, Monitoring Results, and Numerical Simulation
    Hu, Da
    Zhou, Rencui
    Xiao, Luo
    Liang, Xiaoqiang
    Li, Yongsuo
    Yang, Xian
    INTERNATIONAL JOURNAL OF CIVIL ENGINEERING, 2024, 22 (05) : 757 - 771