许利惟, 刘旭, 陈福全. 塌陷作用下埋地悬空管道的力学响应分析[J]. 工程力学, 2018, 35(12): 212-219,228. DOI: 10.6052/j.issn.1000-4750.2017.11.0837
引用本文: 许利惟, 刘旭, 陈福全. 塌陷作用下埋地悬空管道的力学响应分析[J]. 工程力学, 2018, 35(12): 212-219,228. DOI: 10.6052/j.issn.1000-4750.2017.11.0837
XU Li-wei, LIU Xu, CHEN Fu-quan. MECHANICAL ANALYSIS OF BURIED SUSPENDED PIPELINE UNDER THE ACTION OF COLLAPSE[J]. Engineering Mechanics, 2018, 35(12): 212-219,228. DOI: 10.6052/j.issn.1000-4750.2017.11.0837
Citation: XU Li-wei, LIU Xu, CHEN Fu-quan. MECHANICAL ANALYSIS OF BURIED SUSPENDED PIPELINE UNDER THE ACTION OF COLLAPSE[J]. Engineering Mechanics, 2018, 35(12): 212-219,228. DOI: 10.6052/j.issn.1000-4750.2017.11.0837

塌陷作用下埋地悬空管道的力学响应分析

MECHANICAL ANALYSIS OF BURIED SUSPENDED PIPELINE UNDER THE ACTION OF COLLAPSE

  • 摘要: 地面塌陷会使得管道弯曲发生下沉或悬空现象,进而埋地管道会发生局部应力集中现象,是威胁管道安全运行的重要因素。根据管道的受力特点,将管道分为埋地段和悬空段,分别简化为Vlasov弹性地基梁和简支梁模型进行分析。依据管道的变形协调条件,得到了管道的挠度和内力计算公式。结合管道的运行状态,利用解得的内力计算公式,对管道的应力状态进行了分析和计算,为理论模型合理的应用范围提供了判别依据。通过与数值模拟结果和Winkler模型计算结果的对比,采用Vlasov模型对该类问题进行分析是可行的,其计算结果优于Winkler模型的计算结果。分析了管道尺寸、管道埋深、塌陷区域尺寸、以及管道材料对塌陷作用下悬空管道的影响,并进行归一化分析,发现塌陷区域尺寸对管道安全运行的影响最大。

     

    Abstract: Ground subsidence induced by collapse leads to suspension or subsidence of pipes. It can cause stress concentration, which is a significant factor being a threat to safe operation of pipelines. Then the pipes can be divided into suspended segment and buried segment. Based on the theories of the Vlasov Elastic Foundation Beam and simply-supported beams, a mechanical model of interaction between the pipelines and the soils was built up. According to the compatibility conditions of the hanging and non-hanging parts, this paper solved differential equations describing the deflection of pipeline and derived the formulas of deflections and internal forces. Connecting with pipeline operation status, the formulas of piping stresses were deduced by piping stress analysis. Meanwhile piping stress analysis can define the scope of application of the model. The calculated results were compared to the measured values and results by the Winkler model. It is shown that the calculated results of the Vlasov model are more suitable than the Winkler model in analyzing stresses and deformation of pipelines. According to the normalized analysis of main affecting factors including pipe material, pipe dimension, pipe depth and length of collapse, the length of collapse is the most important factor for the safe operation of pipelines.

     

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