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Influence of Backfill Compaction on Mechanical Characteristics of High-Density Polyethylene Double-Wall Corrugated Pipelines

机译:回填压实对高密度聚乙烯双壁波纹管道力学特性的影响

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For flexible pipelines, the influence of backfill compaction on the deformation of the pipe has always been the focus of researchers. Through the finite element software, a three-dimensional soil model matching the exterior wall corrugation of the high-density polyethylene pipe was skillfully established, and the “real” finite element model of pipe-soil interaction verified the accuracy through field test. Based on the model, the strain distribution at any position of the buried HDPE pipe can be obtained. Changing the location and extent of the loose backfill, the strain and radial displacement distributions of the interior and exterior walls of the HDPE pipe under different backfill conditions when external load applied to the foundation were analyzed, and the dangerous parts of the pipe where local buckling and fracture may occur were identified. It is pointed out that when the backfill is loose, near the interface between the backfill loose region and the well-compacted region, the maximum circumferential strain occurs frequently, the exterior wall strain is more likely to increase greatly on the region near crown or invert, the interior wall strains increase in amplitude at springline, and the location of the loose region has a greater influence on the strain of the pipe than the size of the loose area.
机译:对于柔性管道,回填压实对管道变形的影响一直是研究人员的重点。通过有限元软件,巧妙地建立了一种匹配高密度聚乙烯管的外壁波纹的三维土壤模型,并“真实”的管土相互作用的有限元模型通过现场测试验证了精度。基于该模型,可以获得掩埋HDPE管的任何位置处的应变分布。在分析外部负荷的不同回填条件下,改变了松动回填的位置和范围,在不同的回填条件下,当分析到基础的外部负荷以及局部屈曲的管道的危险部分可以发现骨折。所指出的是,当回填松动时,在回填松散区域和良好压实区域之间的界面附近,最大圆周应变频繁发生,外墙应变更可能在冠部附近的区域上大大增加,内壁应变在弹簧线上增加幅度,并且松散区域的位置对管道的应变具有比松散区域的尺寸更大的影响。

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