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Pipeline Infrastructure Renewal at Miami-Dade Water Sewer Department

机译:迈阿密戴德水务和下水道部门的管道基础设施更新

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Various governmental, professional and private studies have shown that the replacement costs of underground pipeline infrastructure is excessive and that best practice approaches for infrastructure risk management promote condition assessment programs to understand the actual condition of individual pipe sections in order to best allocate limited capital replacement and rehabilitation funding. The key element to these programs is a physical inspection of the underground piping which provides the required data for planned renewal and replacement activities which costs significantly less than emergency mobilization repairs.The Miami-Dade Water and Sewer Department (WASD) is one of the largest utilities in the United States and the largest user of Prestressed Concrete Cylinder Pipe (PCCP). A failure in one of their large diameter PCCP treated water mains precipitated a move by WASD to implement the Infrastructure Assessment And Replacement Program (IAARP) to find and implement the best available inspection and rehabilitation technologies to address potentially damaging deficiencies in the large diameter buried pipe of its water distribution system.Using electromagnetic (EM) and acoustic technologies to evaluate distressed pipe and leak detection. Engineers at WASD have collected quantitative information for individual pipe sections in an effort to effectively manage and make the best-informed decisions regarding capital planning and the sustainable operation of their pipeline infrastructure. Over the course of two years, WASD has assessed over 75 miles of PCCP mains. Results show pipelines with distress levels ranging from 0 to almost 20% of pipe sections inspected. The question faced by WASD engineers now is how to maintain pipeline reliability over the remaining life of the pipeline at an acceptable level of risk and most cost effectively.The assessment technologies used by WASD assist in 1) identifying, localizing, and quantifying the presence of broken pre-stressing wires and leaks in individual segments of pipe along the pipeline and 2) providing risk analysis and repair prioritization for pipes identified with broken pre-stressing wires and leakage. As such WASD has been able to categorize the structural damage found, allowing it to prioritize its rehabilitation program and allocate funds accordingly in an emergency and/or an annual basis. The program demonstrates that by using quantitative data from EM and acoustic assessments, a customized pipe rehabilitation solution can be built that saves significant amounts of money for infrastructure renewal while minimizing services disruptions.
机译:各种政府,专业和私人研究都表明,地下管道基础设施的更换成本过高,并且基础设施风险管理的最佳实践方法促进了状况评估计划,以了解各个管道段的实际状况,从而最佳地分配有限的资本更换和康复资金。这些计划的关键要素是对地下管道进行物理检查,从而为计划的更新和更换活动提供所需的数据,其成本大大低于紧急动员维修费用。迈阿密戴德水务和下水道部门(WASD)是最大的之一是美国的公用事业公司,也是预应力混凝土圆柱管(PCCP)的最大用户。他们的一个大直径PCCP处理过的水管发生故障,促使WASD采取了一项行动,以实施基础设施评估和更换计划(IAARP),以寻找并实施最佳的检查和修复技术,以解决大直径埋地管道中潜在的破坏性缺陷。使用电磁(EM)和声学技术评估不良管道和泄漏检测。 WASD的工程师已经收集了各个管道段的定量信息,以有效地管理和做出有关资本规划和管道基础设施的可持续运营的最明智的决策。在过去的两年中,WASD已评估了超过75英里的PCCP干线。结果显示,受灾水平为被检查管道截面的0%到几乎20%的管道。 WASD工程师现在面临的问题是如何在可接受的风险水平和最具成本效益的水平上将管道的整个使用寿命内的管道可靠性保持在可接受的水平。WASD所使用的评估技术可帮助1)识别,定位和量化管道的存在。断裂的预应力丝和沿管道的单个管段中的泄漏; 2)为识别出断裂的预应力丝和泄漏的管道提供风险分析和维修优先级。因此,WASD能够对发现的结构性损坏进行分类,从而使其能够确定其修复计划的优先级,并在紧急情况和/或年度基础上相应地分配资金。该计划表明,通过使用来自EM和声学评估的定量数据,可以构建定制的管道修复解决方案,该解决方案可以节省大量资金用于基础设施更新,同时最大程度地减少服务中断。

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