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首页> 外文期刊>Tunnelling and underground space technology >Fragility analysis of gray iron pipelines subjected to tunneling induced ground settlement
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Fragility analysis of gray iron pipelines subjected to tunneling induced ground settlement

机译:隧道施工引起的灰铁管道脆性分析

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Tunnel excavations can cause ground surface settlement which in turn affects the structural integrity of adjacent pipelines. This paper explores the probabilistic risk assessment of gray iron pipes subjected to tunneling. In the beam-on-spring analysis, a modified Gaussian distribution profile was incorporated as displacement-controlled boundary conditions on spring elements. The modeling strategy was evaluated by comparing calculated pipe strains with field and centrifuge experimental measurements, as well as empirical solutions. The calibrated numerical model was then used to perform parametric fragility analyses using a machine learning technique called Lasso Regression to demonstrate the relative importance of various parameters. It has been found that existing pipelines with a smaller pipe diameter and a larger pipe wall thickness buried at a shallower depth in loosely compacted soils with a smaller soil friction angle are less prone to failure due to tunneling induced ground settlement.
机译:隧道开挖会引起地面沉降,进而影响相邻管道的结构完整性。本文探讨了灰铁管道受隧道影响的概率风险评估。在弹簧梁分析中,结合了改进的高斯分布轮廓作为弹簧单元上位移控制的边界条件。通过将计算出的管道应变与现场和离心实验测量值以及经验解进行比较,评估了建模策略。然后,使用称为Lasso回归的机器学习技术,将校准后的数值模型用于执行参数脆性分析,以证明各种参数的相对重要性。已经发现,在较小的土壤摩擦角的松散压实的土壤中,以较小的深度埋藏的,具有较小管径和较大管壁厚度的现有管道由于隧道引起的地面沉降而较不易发生破坏。

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