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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Performance of steel-reinforced high-density polyethylene pipes in soil during installation: a numerical study
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Performance of steel-reinforced high-density polyethylene pipes in soil during installation: a numerical study

机译:安装过程中钢筋高密度聚乙烯管的性能:数值研究

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Steel-reinforced high-density polyethylene (SRHDPE) pipe combines the advantages of the HDPE and steel pipes with good corrosion resistance and relative high load carrying capacity. However, no widely accepted method is available for design of SRHDPE pipes. The objective of this study is to evaluate effects of several key influence factors on performance of SRHDPE pipes in soil during the installation to facilitate future development of a design method for the SRHDPE pipes. To achieve this objective, a numerical study was conducted to investigate the effects of soil cover thickness, trench width, magnitude of compaction pressure, and friction angle of backfill on the performance of SRHDPE pipes during their installation. Numerical results indicate: (1) pipe peaking deflections increased with an increase in the soil cover thickness, the trench width, and the magnitude of the compaction pressure; (2) the friction angle of the backfill material had an insignificant effect on the pipe deflection; (3) the lateral earth pressure coefficient at the springline of the pipe was approximately 0.65 during the installation; (4) the vertical arching factors at the top of pipes in all cases were greater than 1.0, which means a negative soil arching effect occurring in the soil cover during the pipe installation; and (5) the location and magnitude of the maximum bending moment changed with the elevation of the backfill during the installation.
机译:钢筋高密度聚乙烯(SRHDPE)管子结合了HDPE和钢管的优点,具有良好的耐腐蚀性和相对高负荷承载能力。但是,没有广泛接受的方法可用于设计SRHDPE管道。本研究的目的是评估若干关键影响因素对安装过程中土壤中SRHDPE管道的性能的影响,以促进SRHDPE管道设计方法的未来发展。为实现这一目标,进行了一个数值研究,以研究土壤覆盖厚度,沟槽宽度,压力幅度,压力幅度的影响,以及回填的摩擦角度在安装过程中SRHDPE管道的性能。数值结果表明:(1)管道峰值偏转随着土壤覆盖厚度,沟槽宽度和压实压力的幅度增加而增加; (2)回填材料的摩擦角对管道偏转有微不足道的影响; (3)安装期间管道弹性的横向接地压力系数约为0.65; (4)所有情况下管道顶部的垂直拱形因子大于1.0,这意味着在管道安装期间在土壤盖上发生负土拱形效果; (5)最大弯曲力矩的位置和大小随着安装期间回填的高度而变化。

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