首页|Construction of shallow buried large-span metro stations using the small pipe roof-beam method

Construction of shallow buried large-span metro stations using the small pipe roof-beam method

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In relation to the Shifu Road Station project on Line 4 of the Shenyang Metro in China,a small-pipe roof-beam method for constructing subway stations is presented.First,a numerical simulation was performed to optimize the supporting parameters of the proposed method and determine the design scheme.Subsequently,the deformation of the pipe roof and surface settlement during the construction process were investigated.Finally,the surface settlement attributed to the excavation was studied through field monitoring,and the proposed method was compared with other methods.The results show that an increase in the pipe-roof spacing has little effect on the surface settlement and pipe-roof deformation.The bearing capacity of the pipe roof can be efficiently utilized once the flexural stiffness reaches 2EI,and the flexural stiffness is not the dominant factor controlling the deformation.The essential stages in controlling surface settlement are the excavations of the transverse pilot tunnels and the soil between them.The final settlement value of the ground was 24.1 mm,resulting in a reduction in the construction period by at least five months while satisfying the control requirements.

subway stationpipe-roof methodsurface settlementsimulationon-site monitoring

Qian BAI、Wen ZHAO、Yingda ZHANG、Pengjiao JIA、Xiangrui MENG、Bo LU、Xin WANG、Dazeng SUN

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School of Resources and Civil Engineering,Northeastern University,Shenyang 110819,China

Centre for Infrastructure Engineering and Safety,School of Civil and Environmental Engineering,The University of New South Wales,NSW 2052,Australia

School of Rail Transportation,Soochow University,Suzhou 215131,China

China Northeast Architectural Design and Research Institute Co.,Ltd.,Shenyang 110006,China

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国家自然科学基金江苏省自然科学基金Postdoctoral Research Foundation of China

52108380BK202107212021M702400

2024

结构与土木工程前沿
高等教育出版社

结构与土木工程前沿

CSTPCDEI
影响因子:0.082
ISSN:2095-2430
年,卷(期):2024.18(1)
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