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Non-Destructive In-Situ Condition Assessment of Plastic Pipe Using Ultrasound

机译:使用超声波塑料管的非破坏性原位状况评估

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Pipelines in potable water distribution system are a vital part of modern infrastructure, providing one of the most important services for society. This vital, complex infrastructure is endemic to our urban environments but is ageing, with current average age of around 70 years and with current replacement rates an inferred serviceable asset life of hundreds of years. Hence it is important that we develop technology that will enable pipeline condition assessment without service interruption. Due to environmental and operational stresses acting upon these pipelines, the common structural health problems include stress corrosion, thermal degradation, cracks or even leaks [1]. In particular, it has been suggested that void formation external to buried pipe wall is a crucial factor in pipe breakages due to lack of structural support [1, 2]. This paper presents the development and laboratory testing of ultrasonic non-destructive inspection technology for the condition assessment of plastic pipes, provide a measure of the structural integrity of the pipe, as well as 'looking' through the pipe wall to assess void formation and critical loss of support. Ultrasonic detection results are presented for grooves and cracks with two common plastic pipe materials, HDPE (High-density polyethylene) and PVC (Polyvinyl chloride) in order to simulate material loss in pipe wall. In addition, four voids in the ground external to plastics with varying shapes and dimensions were detected. Tested soils include two particle sized sands and two particle sized gravels. The study demonstrates the feasibility of developing a new technique for condition and health assessing for buried water plastic pipes
机译:饮用水分配系统的管道是现代基础设施的重要组成部分,为社会提供最重要的服务之一。这一重要的复杂基础设施是我们城市环境的流行,但衰老,目前的平均年龄大约70岁,并且当前的替代利率推断为数百年的可维修资产寿命。因此,我们开发将能够在没有服务中断的情况下实现管道状况评估的技术。由于对这些管道作用的环境和操作应力,常见的结构健康问题包括应力腐蚀,热降解,裂缝甚至泄漏[1]。特别地,已经建议埋藏管壁外部的空隙形成是由于缺乏结构支持而导致管道断裂的关键因素[1,2]。本文呈现的超声无损检测技术用于塑料管的状态评估的发展和实验室测试,提供管的结构完整性的量度,以及通过管壁“寻找”来评估空隙形成和临界丧失支持。具有两个常见的塑料管材料,HDPE(高密度聚乙烯)和PVC(聚氯乙烯)的凹槽和裂缝提出超声检测结果,以模拟管壁中的材料损失。另外,检测到具有不同形状和尺寸的塑料的地面中的四个空隙。测试的土壤包括两个粒度尺寸的砂和两个粒度尺寸砾石。该研究表明,为埋藏水塑料管道进行条件和健康评估的新技术的可行性

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