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Deformation Control Technology for the Loess Subway Shield Under - crossing Railway |
REN Jian -xi , LI Long,ZHENG Zan - zan,ZHAN You - ming,SHI Jing - yang,GUO Ying,HE Xiao- li |
Xi'an University of Science and Technology,Xi'an,Shanxi 710054,China |
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Abstract Research purposes : The shield construction of the Line 2 of the urban subway in loess area had to under - cross the Lianyungang - Lanzhou Railway and it was project with the I level risk. In order to guarantee the safe construction of the subway under - crossing the railway,the study was done on the deformation control technology for the shield under - crossing the existing railway for the purpose of providing the technical support for the safe shield construction.
Research conclusions :(1) The rule of the ground surface settlement for the loess subway shield across the existing Lianyungang - Lanzhou railway was forecasted by the FLAC3D numerical simulation analysis; when shield construction without control measures,the settlement of roadbed upward the right tunnel axial line is 20. 48 mm, the settlement of roadbed upward the left tunnel axial line is 12. 85 mm,they are both beyond the allowable value; when shield construction with control measures for reducing the construction risk of the subway shield across the existing line,such as control earth pressure strictly,shield impelling in uniform speed,control the injected amount strictly,reduce the change of the shield impelling direction, etc. The settlement of roadbed upward the right tunnel axial line is 5. 44 mm,the settlement of roadbed upward the left tunnel axial line is 4. 95 mm,they are within the allowable value. (2) The result of the site monitoring indicates that the deformation rule forecasted by the FLAC accounting match with the true value basically,the deformation of the surface and the railway roadbed is allowed. The measures for reducing the construction risk of the subway shield across the existing line proposed is reasonable and effective. (3) The research results can be used in construction control of deformation for the loess subway shield across the railway.
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Received: 23 January 2013
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