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Addressing Rehabilitation Challenges for the Underwood Creek Force Main

机译:应对Underwood Creek Force Main的修复挑战

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This paper discusses the challenges associated with the rehabilitation design and construction of the 36-inch ductile iron pipe (DIP) Underwood Creek force main. Based on the condition assessment and risk analysis, the Milwaukee Metropolitan Sewerage District (MMSD) minimized the risk of continued pipe failures by rehabilitating the force main. The rehabilitation design was based on a review of the currently available technologies and methods to identify those that appeared to be feasible. The four methods selected for further evaluation were cured-in-place pipe (CIPP) (for pressure), swagelining, tight liner (rolldown), and fold and form rehabilitation technologies. The final design documents included the use of two methods, CIPP and high density polyethylene (HDPE) liner, allowing the contractor to select the method and provide MMSD with the most cost-effective solution. The challenges that were addressed included minimizing the number of pits for construction of the liner because of location and constraints, the need to minimize impacts on the Underwood Creek Parkway and crossing a railroad and highway. This paper also discusses the challenges associated with implementing the design during construction and the coordination with many stakeholders, including the full reconstruction of a U.S. Highway 45 interchange by the Wisconsin Department of Transportation (WisDOT), and the construction of overhead high voltage transmission lines by the American Transmission Company (ATC).
机译:本文讨论了与36英寸球墨铸铁管(DIP)Underwood Creek力主管的修复设计和施工相关的挑战。基于状态评估和风险分析,密尔沃基大都市污水处理区(MMSD)通过修复测力总管,将管道连续故障的风险降到最低。修复设计基于对当前可用技术和方法的审查,以确定那些似乎可行的技术和方法。选择用于进一步评估的四种方法是就地固化管(CIPP)(用于压力),型管衬砌,紧密衬里(翻卷)以及折叠和成型修复技术。最终的设计文件包括使用CIPP和高密度聚乙烯(HDPE)衬里两种方法,使承包商可以选择方法,并为MMSD提供最具成本效益的解决方案。解决的挑战包括:由于位置和限制因素而使用于建造衬板的坑的数量最少,需要最大程度地减少对Underwood Creek Parkway的影响以及穿越铁路和公路的需要。本文还讨论了在施工期间实施设计以及与许多利益相关者进行协调所面临的挑战,包括威斯康星州交通运输部(WisDOT)对美国45号公路立交桥的全面重建,以及高架高压输电线路的建设。美国传输公司(ATC)。

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