开发用于水管非开挖修复的模具拉伸设计系数预测模型:案例研究

Yoojin Oh, Haekeum Park, Kibum Kim, Taehyeon Kim, J. Hyung, J. Koo
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引用次数: 0

摘要

老化水管的维护和更换对城市发展至关重要。为此,无需开挖的非开挖修复方法为老化水管的更换提供了有效途径。因此,本研究开发了一种利用模具拉伸的非开挖方法,在保持老化管道主机牵引力的同时,将聚乙烯(PE)衬里持续插入到达点。如果在一定时间后去除牵引力,最初收缩的衬管在自然修复的作用下膨胀,并紧紧粘附在主机管道的内壁上,从而实现老化管道的结构再生。本研究旨在利用修复设计确定影响模具拉伸过程的因素。因此,我们利用高弹性聚乙烯衬里对模压拉伸法进行了实验,以实现结构加固。之后,根据实验数据,我们开发了预测模型来估算牵引力、牵引力释放后的管道修复率和管道修复周期。所开发的模型估算了所需的最短修复期,并对现场施工前设备预维护中使用的模具拉伸法的修复行为提供了更深入的见解。
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Development of die drawing design factor prediction models for trenchless rehabilitation of water pipes: a case study
Maintenance and replacement of aging water pipes are critical for urban development. To this end, trenchless rehabilitation methods that do not require excavation offer an efficient replacement for aging water pipes. Thus, this study developed a trenchless method using die drawing, which continuously inserts polyethylene (PE) liners into the reach point while maintaining traction in the host aging pipe. If the traction is removed after a certain period, the initially contracted liner pipe undergoes expansion under natural restoration and tightly adheres to the inner wall of the host pipe to achieve structural regeneration of the aging pipe. This study aimed to determine the factors influencing the die drawing process using a rehabilitation design. Accordingly, we experimented with the die drawing method to achieve structural reinforcement using high elasticity PE liners. Thereafter, based on the experimental data, we developed prediction models to estimate traction, pipe restoration rate after traction release, and pipe restoration period. The developed models estimated the minimum required restoration period and provided deeper insights into the restoration behavior of the die drawing method employed in pre-equipment maintenance before on-site construction.
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