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Establishing 100-Year Service Life for Corrugated HDPE Drainage Pipe

机译:建立波纹HDPE排水管的100年使用寿命

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The design service life of corrugated high density polyethylene (HDPE) drainage pipe has been a subject of considerable debate and research over the past several years. While significant long-term performance data is available for smooth-walled polyethylene pipe, the data for corrugated drainage pipes is somewhat limited. This paper presents a method for determination of long-term service life of corrugated HDPE pipe by utilizing some of the current widely-accepted methods employed by the plastic pipe industry, while modifying them somewhat to take into account the unique geometry and installation conditions of buried corrugated pipe.The process for long-term service life prediction is two-fold: First, the anticipated service conditions of the drainage pipe must be assessed, including such factors as environmental conditions, soil and traffic loads, and the resulting long-term stresses and strains evident in the pipe. Second, the capacity of the material and the manufactured pipe product must be assessed. The service conditions of the pipe will vary by geographic location, based on temperature and soil and traffic loads. While deep installations may result in large compressive stresses on the pipe, shallow installation are more subject to bending and tensile stresses. Although these stress levels are typically lower in magnitude than the compressive stresses associated with deep burial conditions, they are considered a limiting condition as the material is more prone to failure in tension rather than compression. Recent research performed by Dr. Timothy McGrath for the Florida Department of Transportation on the limiting stress conditions of buried corrugated pipe is presented in this paper (McGrath and Hsuan, 2005).
机译:在过去的几年中,波纹高密度聚乙烯(HDPE)排水管的设计使用寿命一直是许多辩论和研究的主题。尽管对于光滑壁聚乙烯管可获得大量的长期性能数据,但波纹排水管的数据却受到一定限制。本文提出了一种通过利用塑料管行业目前广泛接受的一些方法来确定波纹HDPE管的长期使用寿命的方法,同时对它们进行一些修改以考虑到地下埋管的独特几何形状和安装条件波纹管的长期使用寿命预测过程有两个方面:首先,必须对排水管的预期使用寿命进行评估,包括环境条件,土壤和交通负荷以及由此产生的长期应力等因素。和管道中明显的应变。其次,必须评估材料和制成的管道产品的能力。管道的服务条件会根据地理位置,温度,土壤和交通负荷而变化。深层安装可能会在管道上产生较大的压应力,而浅层安装则更容易受到弯曲应力和拉应力的影响。尽管这些应力水平通常比与深埋条件相关的压应力低,但它们被认为是一种限制条件,因为该材料更容易产生拉力而不是受压。本文介绍了佛罗里达运输部的蒂莫西·麦格拉思(Timothy McGrath)博士最近对埋入波纹管的极限应力条件进行的研究(McGrath and Hsuan,2005)。

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