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Laboratory evaluation of installation of a steel-reinforced high-density polyethylene pipe in soil

机译:在土壤中安装钢增强高密度聚乙烯管的实验室评估

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A new steel-reinforced high-density polyethylene (SRHDPE) pipe has been recently introduced to the market. The pipe combines high-strength helically wound steel reinforcing ribs with corrosion-resistant high-density polyethylene (HDPE) resin cover and liner. The behavior and performance of such a new pipe have not been well studied under a shallow cover during installation. To investigate the behavior and performance of the SRHDPE pipe during installation, a test section was constructed in a large test box in laboratory. This investigation was performed in the box with a trench condition under a 0.61 m thick soil cover with sand as the bedding and backfill materials and aggregate as a base course. The pressure distribution around the pipe, deflections of the pipe, and the strains on both steel and polyethylene plastic were measured during the installation. No cracking of the plastic liner or plastic cover was observed during the experiment. The test results and analysis concluded that the pipe wall-soil interface should be considered fully bonded to be conservative. The formula proposed by Masada and Sargand reasonably predicted the peaking deflection of the pipe in the compacted sand backfill. The modified Iowa formula by Watkins and Spangler under-predicted the deflections of the SRHDPE pipe during the installation more than that by the solution proposed by McGrath. The pipe wall area was strong and stiff enough to resist the wall thrust during the installation. The highest measured strains recorded on steel and plastic during the installation were below the maximum permissible limits. (C) 2015 Elsevier Ltd. All rights reserved.
机译:最近,一种新型的钢增强高密度聚乙烯(SRHDPE)管已投放市场。该管结合了高强度螺旋缠绕的钢制加强筋,耐腐蚀的高密度聚乙烯(HDPE)树脂盖和衬里。在安装过程中,在浅盖下对这种新管道的性能和性能尚未进行很好的研究。为了研究SRHDPE管道在安装过程中的行为和性能,在实验室的大型测试箱中构造了一个测试段。该研究是在具有沟槽条件的盒子中进行的,该盒子在0.61 m厚的土壤覆盖层上,以沙子作为垫层和回填材料,并以骨料为基础。在安装过程中,测量了管道周围的压力分布,管道的挠度以及钢和聚乙烯塑料上的应变。实验期间未观察到塑料衬里或塑料盖破裂。测试结果和分析得出的结论是,应认为管壁-土壤界面是完全粘结的,是保守的。 Masada和Sargand提出的公式合理地预测了压实砂回填中管道的峰值挠度。与McGrath提出的解决方案相比,沃特金斯和斯潘格勒(Watkins and Spangler)修改后的爱荷华州公式低估了SRHDPE管的挠度。管壁面积足够坚固,足以抵抗安装过程中的壁推力。在安装过程中,钢和塑料上记录的最高测量应变低于最大允许极限。 (C)2015 Elsevier Ltd.保留所有权利。

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