首页|A 3D sliced-soil-beam model for settlement prediction of tunnelling using the pipe roofing method in soft ground

A 3D sliced-soil-beam model for settlement prediction of tunnelling using the pipe roofing method in soft ground

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The pipe roofing method is widely used in tunnel construction because it can realize a flexible section shape and a large section area of the tunnel,especially under good ground conditions.However,the pipe roofing method has rarely been applied in soft ground,where the prediction and control of the ground settlement play important roles.This study proposes a sliced-soil-beam(SSB)model to predict the settlement of ground due to tunnelling using the pipe roofing method in soft ground.The model comprises a sliced-soil module based on the virtual work principle and a beam module based on structural mechanics.As part of this work,the Peck formula was modified for a square-section tunnel and adopted to construct a deformation mechanism of soft ground.The pipe roofing system was simplified to a three-dimensional Winkler beam to consider the interaction between the soil and pipe roofing.The model was verified in a case study conducted in Shanghai,China,in which it provided the efficient and accurate prediction of settlement.Finally,the parameters affecting the ground settlement were analyzed.It was clarified that the stiffness of the excavated soil and the steel support are the key factors in reducing ground settlement.

pipe roofing methodsoft groundnumerical simulationsettlement predictionsimplified calculationparametric analysis

Yu DIAO、Yiming XUE、Weiqiang PAN、Gang ZHENG、Ying ZHANG、Dawei ZHANG、Haizuo ZHOU、Tianqi ZHANG

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Key Laboratory of Coastal Civil Engineering Structure and Safety of Ministry of Education,Tianjin University,Tianjin 300072,China

Department of Civil Engineering,Tianjin University,Tianjin 300072,China

Shanghai Tunnel Engineering Construction Co.,Ltd.,Shanghai 200032,China

Tianjin Municipal Engineering Design & Research Institute,Tianjin 300392,China

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National Natural Science Foundation of ChinaTianjin Natural Science FoundationShanghai Excellent Academic/Technical Leader Program

5217834221JCZDJC0059020XD1432500

2023

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

CSTPCDCSCDEI
影响因子:0.082
ISSN:2095-2430
年,卷(期):2023.(12)
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