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Physical Model Test on the Behavior of Large Slurry Shield-Driving Tunnel in Soft Clay 被引量:4

Physical Model Test on the Behavior of Large Slurry Shield-Driving Tunnel in Soft Clay
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摘要 As the dimension of the slurry shield is greatly increasing, more and more attention is paid to the face stability of slurry shield-driven tunnel in recently years. A reduced-scale slurry shield model test is carried out based on the background of Qianjiang River Tunnel and Shanghai Yangtze River Tunnel. The results of the model test are presented in this paper with particular emphasis on the slurry shield driving parameters and the critical slurry pressure of the excavating face. It is shown that the behavior of large slurry shield-driving induced by the cutting face is mostly decided by the fluctuation of the slurry pressure in the chamber, and a smaller slurry pressure fluctuation range is presented according to the results of the physical model test. Especially, it is more difcult to control the machine in sandy silt than that in soft clay and muddy clay. The chamber pressure will fluctuate greatly when excavating in high permeability ground, and the gradient of accumulation of the flux diference could be used to evaluate the face balance of the slurry shield excavation. As the dimension of the slurry shield is greatly increasing, more and more attention is paid to the face stability of slurry shield-driven tunnel in recently years. A reduced-scale slurry shield model test is carried out based on the background of Qianjiang River Tunnel and Shanghai Yangtze River Tunnel. The results of the model test are presented in this paper with particular emphasis on the slurry shield driving parameters and the critical slurry pressure of the excavating face. It is shown that the behavior of large slurry shield-driving induced by the cutting face is mostly decided by the fluctuation of the slurry pressure in the chamber, and a smaller slurry pressure fluctuation range is presented according to the results of the physical model test. Especially, it is more difficult to control the machine in sandy silt than that in soft clay and muddy clay. The chamber pressure will fluctuate greatly when excavating in high permeability ground, and the gradient of accumulation of the flux difference could be used to evaluate the face balance of the slurry shield excavation.
出处 《Journal of Shanghai Jiaotong university(Science)》 EI 2013年第6期693-698,共6页 上海交通大学学报(英文版)
基金 the National Natural Science Foundation of China(No.51108268) the Program for Changjiang Scholars and Innovative Research Team in University(PCSIRT,IRT1029) the Key Technol-ogy Research on Qianjiang Tunnel Project(No.2009-35333340)
关键词 SLURRY PRESSURE BALANCED method PHYSICAL model test SLURRY PRESSURE TUNNEL slurry pressure balanced method, physical model test, slurry pressure, tunnel
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