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Numerical investigation of soil-pipeline system behavior nearby unsupported excavation in saturated and unsaturated glacial till

机译:饱和和不饱和冰川膨胀挖掘的土壤管道系统行为的数值调查

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摘要

Buried pipeline systems form vital infrastructure, all over the world, to transport resources such as water, oil, and gas from the production stage to the locations of consumption. Failure or rupture in pipelines in general and oil or gas pipelines in particular lead to not only economic losses that are expensive, but also cause extensive damage to the environment in several scenarios. One of the key reasons for buried pipeline systems failure is associated with excavation or soil trenching within the proximity of pipelines. Soil deformation associated with excavation causes relative displacement between the pipeline and the surrounding soil, which contributes to external as well as internal stresses and strains on the pipelines. In this study, numerical analyses are carried out to investigate the behaviors of buried rigid and flexible pipelines by extending the effective stress analysis and the modified effective stress analysis approaches for saturated and unsaturated soils, respectively. The pipe displacement, strains, and internal force results from the study suggest that soil trenching in unsaturated soils contribute to limited deformations within the proximity of the embedded pipelines and result in lower internal forces. The proposed methodology can be used to determine the safe depths of unsupported excavations in unsaturated soils without causing excessive strains or internal forces in the ring of rigid and flexible pipes.
机译:埋地管道系统形成了世界各地的重要基础设施,将水,石油和天然气等运输资源从生产阶段运送到消费地点。一般和石油或天然气管道的管道失败或破裂特别是不仅导致昂贵的经济损失,而且在几种情况下对环境造成广泛的损害。埋地管道系统故障的一个主要原因之一与管道附近的挖掘或土壤沟渠相关联。与挖掘相关的土壤变形导致管道和周围土壤之间的相对位移,这有助于外部以及管道上的内部应力和菌株。在该研究中,进行数值分析,以研究通过延长饱和和不饱和土壤的有效应力分析和改性的有效应力分析方法来研究掩埋刚性和柔性管道的行为。该研究的管道位移,菌株和内部力结果表明,不饱和土壤中的土壤沟槽有助于嵌入管道接近的有限变形,并导致较低的内部力。所提出的方法可用于确定不饱和土中不受支持的挖掘的安全深度,而不会导致刚性和柔性管环中的过度菌株或内部力。

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