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Your Rusty Pipes - Repair or Replace The Thomson Conduit Story

机译:您生锈的管道 - 修理或更换汤姆森管道故事

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As hydroelectric power water conveyance conduits across the country age, Owners are being challenged to complete difficult inspections and are required to make decisions around rehabilitation versus replacement of these significant assets. MP had a similar situation develop when they had to deactivate the FERC-regulated water conveyance system at the Thomson Hydroelectric Development due to a flood-related 2012 breach along the forebay embankment. The penstocks were originally constructed in 1905 and were upgraded at various times throughout the following years. To evaluate the reliability of the riveted and welded steel pipe conduit system, MP elected to conduct a detailed inspection and structural assessment of the conduit system while the project was idle. This project was different than typical penstock evaluations, as MP elected to clean the interior of the steel pipes to allow for the detailed inspection and prepare for lining. This allowed the identification, documentation, and quantification of specific defects. The field inspection identified areas of severe pitting, holes, bulges, buckles, and deformations in the pipes. The inspection also included ultra-sonic thickness measurements, out-of-round measurements, and obtaining steel coupon samples from the various pipe construction eras for use in development of the allowable stresses, which are based on the tensile strength data obtained from the coupon samples. Using the field and laboratory results, hoop stress calculations were performed for each pipe section. As the analyses identified general structurally deficient areas, additional field data was collected to narrow in on the specific extent of problem areas. This iterative approach of progressively more detailed pipe inspection and assessment identified only those localized conduit areas that were found to be structurally deficient. This approach ultimately allowed MP to retain a majority of their aging asset with minimal rehabilitation work at substantial cost savings. GEI worked closely with MP and their preferred contractor who was engaged early in the design process to develop cost-effective and efficient penstock remedial repair designs. The rehabilitation work included localized pipe repairs, pipe replacement, pipe slip-lining, polyurethane lining and coating, and installation of an active cathodic protection system. This project can serve as a guide for other Owners looking to evaluate and repair their aging conduit infrastructure.
机译:作为国家时代的水力发电输送管道,业主受到完全困难的检查,并且需要在康复和更换这些重要资产的恢复方面做出决定。当由于前线堤防的洪水与2012年违反的漏斗导致汤森水力发电,迈将MP发生了类似的情况。钢笔最初是在1905年建造的,贯彻在持续的几年内在不同时间升级。 To evaluate the reliability of the riveted and welded steel pipe conduit system, MP elected to conduct a detailed inspection and structural assessment of the conduit system while the project was idle. This project was different than typical penstock evaluations, as MP elected to clean the interior of the steel pipes to allow for the detailed inspection and prepare for lining.这允许识别,文档和量化特定缺陷。现场检查确定了严重点,孔,凸起,扣和管道变形的区域。检查还包括超声厚度测量,绕圆形测量,以及从各种管道建筑时代获得钢优惠券样本,以便在允许的应力的开发中,这是基于从优惠券样本获得的拉伸强度数据。使用现场和实验室结果,对每个管道进行箍应力计算。由于分析确定了一般结构缺陷的区域,因此收集了额外的场数据,以缩小问题区域的特定程度。这种迭代方法逐步更详细的管道检查和评估鉴定了发现在结构上缺陷的本地化导管区域。这种方法最终使MP能够以最大的成本节约,以最小的康复工作保留大多数老化资产。 GEI与MP及其首选承包商密切合作,他们在设计过程中从事,以开发成本效益和高效的钢笔修复设计。康复工作包括本地化管道修理,管道更换,管道滑衬,聚氨酯衬里和涂层,以及安装有源阴极保护系统的安装。该项目可以作为寻求评估和修复其老化导管基础设施的其他业主的指南。

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