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Long-Term Performance of Buried Pipes Under Flowable Fill and Granular Stone Backfill.

机译:流动填料和粒状石回填下埋管的长期性能。

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摘要

Underground conduits have been used to improve living standards of people since the development of civilization. Buried pipes are used in various applications such as highway drainage, sewerage and conveyance systems. Time dependent properties such as creep associated with thermoplastic (HDPE and PVC) and concrete materials may reduce the expected design life of pipes under field conditions. The objective of this research work was to examine the long term performance of buried pipes used in highway applications by using the finite element method. The variables investigated in this research include types of pipe material, pipe diameter, fill height, pipe backfill material, and trench width. Corrugated high density polyethylene (HDPE), solid wall polyvinyl chloride (PVC), reinforced concrete (RCP), and corrugated steel pipes (CSP) have been considered in this study. The influence of trench widths and time dependent material properties such as creep of pipe materials on the performance of buried pipes was investigated for a time period of 50 years under different loading conditions (dead and live loads). The performance of pipe under fill heights ranging from 10 feet (3 m) to 50 feet (15 m) and trench width ratios varying from 1.5 to 2.5 have been analyzed. Trench width ratio can be defined as the trench width divided by the mean diameter of the pipe. Results show that almost 60% to 80% of pipe deflections occur during the first year of installation for all the pipes. This percentage depends on the pipe material and the loads. For PVC pipes, the deflection in the first year is about 70% of the total deflection. For HDPE pipes, this percentage is 60% to 80%. The results from the numerical analyses suggest that a trench width as low as 1.5 times the diameter of the pipe can be used to install pipes under fill heights up to 40 feet (12 m) without any failure. For PVC pipes, the fill height could be as high as 50 feet for a trench width ratio of 1.5. However, HDPE pipes exhibit the possibility of failure at 50 feet (15 m) burial depth under the combination of live and dead loads. Computed deflections in concrete and steel pipes are small and hence could be installed up to depths of 50 feet without meeting the pipe failure criterion.
机译:自文明发展以来,地下管道一直被用来改善人们的生活水平。地下管道用于各种应用,例如高速公路排水,下水道和输送系统。与时间有关的特性(例如与热塑性塑料(HDPE和PVC)和混凝土材料相关的蠕变)可能会缩短现场条件下管道的预期设计寿命。这项研究工作的目的是通过有限元方法研究公路应用中埋地管道的长期性能。本研究中调查的变量包括管道材料的类型,管道直径,填充高度,管道回填材料和沟槽宽度。这项研究考虑了波纹高密度聚乙烯(HDPE),实心壁聚氯乙烯(PVC),钢筋混凝土(RCP)和波纹钢管(CSP)。在不同的载荷条件(静载荷和活载荷)下,研究了沟渠宽度和随时间变化的材料特性(例如管道材料的蠕变)对埋管性能的影响,持续了50年。分析了填充高度从10英尺(3 m)到50英尺(15 m)且沟槽宽度比从1.5到2.5变化的管道的性能。沟槽宽度比可以定义为沟槽宽度除以管道的平均直径。结果表明,在所有管道安装的第一年中,几乎有60%至80%的管道发生挠曲。该百分比取决于管道材料和负载。对于PVC管,第一年的挠度约为总挠度的70%。对于HDPE管道,该百分比为60%至80%。数值分析的结果表明,低至管道直径的1.5倍的沟槽宽度可用于在填充高度不超过40英尺(12 m)的情况下安装管道。对于PVC管道,沟槽宽度比率为1.5时,填充高度可能高达50英尺。但是,HDPE管道在活荷载和恒荷载的共同作用下,在50英尺(15 m)的埋深处都可能发生破坏。混凝土和钢管的计算挠度很小,因此可以安装到50英尺深,而又不满足管道破坏标准。

著录项

  • 作者

    Varre, Sai Bharath Kumar.;

  • 作者单位

    West Virginia University.;

  • 授予单位 West Virginia University.;
  • 学科 Civil engineering.
  • 学位 M.S.
  • 年度 2011
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:44:36

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