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Using the Alternative Delivery CMAR Method to Reline Two 12-ft Diameter Steel Pumping Plant Discharge Pipes and Discharge Manifold Piping at the Central Arizona Project

机译:使用替代交货CMAR方法在亚利桑那州中央项目中提供两种12英尺直径的钢泵浦厂排放管和排放歧管管道

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The Central Arizona Project (CAP) recently completed relining two 12-ft diameter steel pipes and associated manifold systems at the Mark Wilmer Pumping Plant on Lake Havasu in western Arizona, using the construction manager at risk (CMAR) project delivery method. The Mark Wilmer Pumping Plant withdraws about 1.6 million acre-feet (ac-ft) of water each year from the Colorado River and via six pumps lifts the water through two 12-ft diameter steel pipes about 850 ft to the Buckskin Mountain Tunnel. The pumps are arranged in two-sets of three units which allows isolation of three pumps, a single manifold, and a single discharge pipe for maintenance while still operating the other three units and associated valves and piping. The two 144-in diameter steel discharge pipes are each about 2,300 ft long with slopes that vary from about 9° to 45°. The discharge pipes and manifolds were installed with the construction of the pumping plant in the early 1980s, and the pipes and manifolds lined with a hot-applied-cold-tar-enamel (HACTE) in 1982. In 1986, the plant was commissioned and has been moving water for over 30 years. In 2016, the right pipe and manifold was relined, and in 2017 the left pipe and manifold was relined. As part of CAP's ongoing asset management program, the manifolds and discharge pipes have been inspected multiple times, and while it was apparent the HACTE was failing, CAP performed spot repairs of the lining as outages and internal man-power allowed. In 2012, it became evident the lining had reached its end and more than just spot repairs would be required to protect the integrity of the steel pipe. A project was developed to remove the HACTE and replace it with a modern coating system. Due to the physical extremes of the work and short outage window, it was decided to use an outside contractor to perform the work, and rather than use the traditional design-bid-build delivery method, CAP decided to use the CMAR approach. This paper will examine the initial development of the project surrounding the decision to use CMAR, outline the contractor selection process and the pros/cons surrounding that process, discuss the role the selected contractor played in the design (pre-construction services) of the new coatings system, then look at the development (negotiations) of the guaranteed maximum price (GMP), and finally review the delivery of the project. A brief discussion of CMAR versus design-bid-build and how the CAP approaches each will also be included.
机译:亚利桑那州中央项目(CAP)最近完成了在亚利桑那州的哈斯苏湖马克威尔默泵浦厂中的两个12英尺直径的钢管和相关歧管系统,使用风险(CMAR)项目交付方法。 Mark Wilmer泵送工厂每年从科罗拉多河撤出约160万英尺(AC-FT)的水,通过六个泵将水抬高到22英尺直径的钢管大约850英尺到Buckskin山隧道。泵布置成两组三个单元,其允许分离三个泵,单个歧管和单个排放管以进行维护,同时仍然操作其他三个单元和相关阀和管道。两个144-直径的钢排放管每个约2,300英尺长,斜坡从约9°到45°变化。在20世纪80年代初,在泵浦厂的建设中安装了排放管和歧管,1982年,管道和歧管衬有热施热的冷蛋白(HACTE)。1986年,该工厂被委托和一直在移动水超过30年。在2016年,右管和歧管在2017年,左管和歧管中的重新定位。作为上限持续资产管理计划的一部分,多次检查了歧管和排放管,虽然显而易见的HACTE正在发生故障,但盖帽表现出衬里的现场修复作为中断和内部人力。 2012年,它变得明显,衬里已达到其结束,不仅仅是现场维修需要保护钢管的完整性。开发了一个项目以拆下哈特并用现代涂层系统更换。由于工作的物理极端和短暂的停电窗口,决定使用外部承包商来执行工作,而不是使用传统的设计出价的交付方法,帽决定使用CMAR方法。本文将研究围绕决定使用CMAR的项目的初步开发,概述承包商选择过程和周围的利用/缺点,讨论所选承包商在新的设计(预构建服务)中扮演的作用涂料系统,然后查看保证最高价格(GMP)的开发(谈判),最后审查项目的交付。简要讨论CMAR与Design-Bid-Build以及CAP接近的方式也将被包括在内。

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