Analysis of tunneling-induced ground movements in spatially variable soil under the influence of existing building

Tunnel construction invariably results in ground movement, which is significantly impacted by the spatial variability of soil properties and proximity of existing buildings. However, few studies have examined the coupled effect of these two factors on tunneling-induced ground movement. This study es...

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Published inComputers and geotechnics Vol. 166; p. 106003
Main Authors Wu, Hao, Gan, Xiaolu, Liu, Nianwu, Yang, Kejia, Sun, Zhanju
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.02.2024
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Abstract Tunnel construction invariably results in ground movement, which is significantly impacted by the spatial variability of soil properties and proximity of existing buildings. However, few studies have examined the coupled effect of these two factors on tunneling-induced ground movement. This study establishes a stochastic finite element model that incorporates both the spatial variability of soil properties and influence of existing buildings. The model is used to perform a series of random analyses, studying the effects of story number, eccentricity, and building length on ground settlements induced by tunneling in soil with spatial variability of Young’s modulus. A probabilistic analysis is conducted to investigate the uncertainties associated with ground settlements. The results of the analysis indicate that the presence of the building enhances the influence of the spatial variability of soil, leading to an increase in the dispersion of ground settlement. For high-rise buildings, the reduction of building eccentricity and length will increase the uncertainty of surface settlement. Neglecting the influence of the existing building in the probability analysis of surface settlement can result in an overestimation of the failure probability.
AbstractList Tunnel construction invariably results in ground movement, which is significantly impacted by the spatial variability of soil properties and proximity of existing buildings. However, few studies have examined the coupled effect of these two factors on tunneling-induced ground movement. This study establishes a stochastic finite element model that incorporates both the spatial variability of soil properties and influence of existing buildings. The model is used to perform a series of random analyses, studying the effects of story number, eccentricity, and building length on ground settlements induced by tunneling in soil with spatial variability of Young’s modulus. A probabilistic analysis is conducted to investigate the uncertainties associated with ground settlements. The results of the analysis indicate that the presence of the building enhances the influence of the spatial variability of soil, leading to an increase in the dispersion of ground settlement. For high-rise buildings, the reduction of building eccentricity and length will increase the uncertainty of surface settlement. Neglecting the influence of the existing building in the probability analysis of surface settlement can result in an overestimation of the failure probability.
ArticleNumber 106003
Author Sun, Zhanju
Wu, Hao
Gan, Xiaolu
Liu, Nianwu
Yang, Kejia
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Keywords Tunneling
Random field
Spatial soil variability
Probabilistic analysis
Ground settlement
Existing building
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Snippet Tunnel construction invariably results in ground movement, which is significantly impacted by the spatial variability of soil properties and proximity of...
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elsevier
SourceType Enrichment Source
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Publisher
StartPage 106003
SubjectTerms Existing building
Ground settlement
Probabilistic analysis
Random field
Spatial soil variability
Tunneling
Title Analysis of tunneling-induced ground movements in spatially variable soil under the influence of existing building
URI https://dx.doi.org/10.1016/j.compgeo.2023.106003
Volume 166
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