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首页> 外文期刊>Journal of natural gas science and engineering >An analytical procedure for modelling pipeline-landslide interaction in gas pipelines
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An analytical procedure for modelling pipeline-landslide interaction in gas pipelines

机译:用于燃气管道管道 - 滑坡相互作用的分析方法

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Landslide occurrence is a major consequence of seismic activity in uphill ground conditions. There effects range from minor damage to severe malfunctioning of local infrastructure. Particularly for transport systems such as underground gas transmission pipelines, the nature of landslide phenomenon is usually catastrophic, thereby necessitating a detailed design analysis for ensuring structural integrity. Numerous research studies have addressed these specific considerations, facilitated substantially by the advent of numerical software simulation. However, relevance of theoretical analysis and their application is still considered significant. This research study aims to determine the limiting axial strains of an underground gas pipeline subjected to longitudinal landslide movement. A novel mathematical formulation is first developed, giving due consideration to the pipeline-soil interaction, internal pressure, weight and temperature loads. Numerical simulation study through COMSOL Multiphysics software is then conducted for the same given conditions. Percentage error of around 6% was observed between the results obtained from both approaches. The proposed analytical methodology was further validated through sensitivity analysis involving slope angle variation. For different slope angles, percentage error between software and analytically computed results varied between 4% and 6%. Effects of changes in pipeline material, soil cohesive strengths and temperature gradient on underlying strains and loads contribution profile were also investigated through the sensitivity analysis study. For the achieved results, compliance with American Lifeline Alliance code was ensured and achieved for both tensile and compressive strain domains.
机译:山体滑坡发生是地震活动在地面地震活动中的主要结果。有效的范围从众所周置的局部基础设施严重损坏。特别是对于诸如地下燃气传输管道之类的运输系统,滑坡现象的性质通常是灾难性的,从而需要进行详细的设计分析,以确保结构完整性。许多研究研究已经解决了这些具体的考虑因素,这促进了数值软件模拟的出现。但是,理论分析及其申请的相关性仍被认为是显着的。该研究研究旨在确定经受纵向滑坡运动的地下气管线的限制轴向菌株。首先开发了一种新的数学制剂,适当考虑管道 - 土壤相互作用,内部压力,重量和温度负荷。然后在相同的给定条件下进行COMSOL MultiphySics软件的数值模拟研究。在两种方法获得的结果之间观察到百分比误差约为6%。通过涉及坡角度变化的灵敏度分析进一步验证了所提出的分析方法。对于不同的斜率角度,软件和分析计算结果之间的百分比误差变化在4%和6%之间。通过敏感性分析研究,还研究了管道材料,土壤粘性强度和温度梯度对底层菌株和载荷贡献曲线的影响。对于实现的结果,确保了符合美国生命线联盟代码,并对拉伸和压缩应变结构域实现。

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