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首页> 外文期刊>Journal of Performance of Constructed Facilities >Condition Prediction for Cured-in-Place Pipe Rehabilitation of Sewer Mains
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Condition Prediction for Cured-in-Place Pipe Rehabilitation of Sewer Mains

机译:下水管道现场固化管道修复的状态预测

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摘要

Authorities in Quebec, Canada, have been making considerable efforts to improve sewer networks across the province by using up-to-date technologies. To rehabilitate its sewer mains, Quebec has used several rehabilitation methods including slip lining, cement and epoxy lining, and cured-in-place pipe (CIPP).These replacement and rehabilitation techniques have been developed over the last four decades, with many arbitrary declarations made about the efficiency and performance of different rehabilitation techniques. This paper presents condition prediction models for CIPP rehabilitation of sewer mains. Regression analysis technique is used to develop these models, based on gathered and analyzed closed-circuit television (CCTV) inspection reports for Quebec CIPP rehabilitations. The models can predict the structural and operational conditions of CIPP rehabilitation on the basis of basic input such as pipe material, and rehabilitation type and date. They can also generate curves illustrating condition deterioration over time with respect to governing factors. A data set was randomly selected and put aside for validating the developed models. Models validation was based on the value of the coefficient of multiple determination (R2) ranging between 94 and 99%. The developed models are expected to be used by municipalities and contractors to forecast the condition of rehabilitated pipelines, plan inspections, and make informed budget allocation decisions. (C) 2016 American Society of Civil Engineers.
机译:加拿大魁北克省当局一直在努力通过使用最新技术来改善全省的下水道网络。为了修复下水道的水管,魁北克采用了几种修复方法,包括滑衬,水泥和环氧衬里以及现浇管(CIPP)。这些更换和修复技术在过去的40年中得到了发展,并有许多声明讨论了不同康复技术的效率和性能。本文提出了CIPP污水管网修复的状态预测模型。基于收集和分析的魁北克CIPP修复的闭路电视(CCTV)检查报告,使用回归分析技术来开发这些模型。这些模型可以根据基本输入(例如管道材料,修复类型和日期)来预测CIPP修复的结构和操作条件。他们还可以生成曲线,说明相对于控制因素,条件随时间推移而恶化的情况。随机选择一个数据集并放在一边以验证开发的模型。模型验证是基于多重确定系数(R2)的值,介于94%和99%之间。预计开发的模型将由市政当局和承包商用于预测已修复管道的状况,计划检查并做出明智的预算分配决定。 (C)2016年美国土木工程师学会。

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