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    Three-Dimensional Numerical Modeling of Freezing Construction of Underpass Tunnels Considering Orthotropic Anisotropy of Frozen Soil

    Source: International Journal of Geomechanics:;2024:;Volume ( 024 ):;issue: 010::page 04024205-1
    Author:
    Mengkai Li
    ,
    Haibing Cai
    ,
    Changqiang Pang
    DOI: 10.1061/IJGNAI.GMENG-9132
    Publisher: American Society of Civil Engineers
    Abstract: Compared to traditional tunnel construction, artificial freezing involves two distinct stages: freezing and thawing. However, this process can pose a risk to the surrounding environment if it is not possible to accurately analyze the frost heave and thawing settlement during the freezing process. The thermomechanical coupled mathematical model of formation frost heave was established by considering boundary conditions, such as formation temperature and convective heat transfer, and introducing the parameters of instantaneous volumetric strain and denaturation characteristic coefficient. In addition, the numerical analysis method for the whole construction process of the tunnel by the horizontal freezing method was established by programming the user subroutine that takes into account the characteristic coefficients of frozen soil relying on the secondary development technology of ABAQUS (version 2022). Then, the method was applied to the horizontal freezing engineering of a double-line tunnel, and the distribution laws of the freezing temperature field and frost heave displacement field were obtained and compared with the field measurement results. The numerical analysis method for determining the deformation law of the ground surface has been shown to be reliable through comparison with field measurements. This method can serve as a reference for designing effective ground surface heaving control schemes during the freezing construction period of tunnels in complex environments.
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      Three-Dimensional Numerical Modeling of Freezing Construction of Underpass Tunnels Considering Orthotropic Anisotropy of Frozen Soil

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4299123
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    • International Journal of Geomechanics

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    contributor authorMengkai Li
    contributor authorHaibing Cai
    contributor authorChangqiang Pang
    date accessioned2024-12-24T10:32:43Z
    date available2024-12-24T10:32:43Z
    date copyright10/1/2024 12:00:00 AM
    date issued2024
    identifier otherIJGNAI.GMENG-9132.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4299123
    description abstractCompared to traditional tunnel construction, artificial freezing involves two distinct stages: freezing and thawing. However, this process can pose a risk to the surrounding environment if it is not possible to accurately analyze the frost heave and thawing settlement during the freezing process. The thermomechanical coupled mathematical model of formation frost heave was established by considering boundary conditions, such as formation temperature and convective heat transfer, and introducing the parameters of instantaneous volumetric strain and denaturation characteristic coefficient. In addition, the numerical analysis method for the whole construction process of the tunnel by the horizontal freezing method was established by programming the user subroutine that takes into account the characteristic coefficients of frozen soil relying on the secondary development technology of ABAQUS (version 2022). Then, the method was applied to the horizontal freezing engineering of a double-line tunnel, and the distribution laws of the freezing temperature field and frost heave displacement field were obtained and compared with the field measurement results. The numerical analysis method for determining the deformation law of the ground surface has been shown to be reliable through comparison with field measurements. This method can serve as a reference for designing effective ground surface heaving control schemes during the freezing construction period of tunnels in complex environments.
    publisherAmerican Society of Civil Engineers
    titleThree-Dimensional Numerical Modeling of Freezing Construction of Underpass Tunnels Considering Orthotropic Anisotropy of Frozen Soil
    typeJournal Article
    journal volume24
    journal issue10
    journal titleInternational Journal of Geomechanics
    identifier doi10.1061/IJGNAI.GMENG-9132
    journal fristpage04024205-1
    journal lastpage04024205-13
    page13
    treeInternational Journal of Geomechanics:;2024:;Volume ( 024 ):;issue: 010
    contenttypeFulltext
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