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3D numerical modelling of the impact of tunnelling in soft soil on buried pipelines

机译:3D数值模拟在软土隧道中对地下管道的影响

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The underground space in urban areas is congested with structures, including pipelines, whichrnare affected by underground construction such as tunneling. This paper investigates the problem of tunnelingrneffects on buried pipelines, using finite difference code FLAC3D.A 3D numerical pipe-soil model is developedrnand tunneling effect is simulated with settlement troughs which are applied at the bottom of model. 2D and 3Drnsettlement troughs are adopted respectively to study the pipeline behavior at the final state of tunneling and inrnthe process of tunneling.A series of numerical parametric studies is performed to analyze various combinationsrnof settlement profiles, joint stiffness, pipe material properties and soil properties. The results are summarizedrnand presented in a normalized plot of relative joint-pipe stiffness, relative pipe-soil stiffness, joints spacing andrnrelative position between joints and tunnel, which are validated with an analytical approach given by Klar et al.rnEffect of tunneling orientation relative to pipeline is also explored.The results indicate it might be un-conservativernif the analysis only considers the final state of tunneling as the critical state but neglects the variation of stressrnin the process of tunneling.
机译:市区的地下空间充斥着包括管道在内的结构,这些结构受到诸如隧道之类的地下建筑的影响。本文利用有限差分码FLAC3D研究了地下管线的隧穿效应问题。建立了三维三维管土数值模型,并通过模型底部的沉降槽模拟了隧道效应。分别采用2D和3D沉降槽研究管道在最终开挖状态和开挖过程中的行为,并进行了一系列数值参数研究,以分析各种组合的沉降曲线,接缝刚度,管道材料特性和土壤特性。总结结果并以相对节理管相对刚度,相对管土相对刚度,节理间距和节理与隧道之间的相对位置的标准化图表示,并由Klar等人给出的分析方法进行了验证。结果表明,如果仅将隧道的最终状态视为临界状态,而忽略了隧道施工过程中应力的变化,则可能是不保守的。

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