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Innovative Methods in Nondestructive Tunnel Evaluation

机译:非破坏性隧道评估的创新方法

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Evaluation of tunnels presents a challenging problem. Roadway and rail tunnels by their very design are subject to the constant presence of moisture, even in relatively dry climates. This can lead to a number of problems such as corrosion of embedded reinforcement and delamination, voids between the liner and subbase material, and water flow through and behind the liner, which sometimes appears in locations remote to the water source. Tunnels that are faced with tile or other surface materials can become debonded or mask deeper flaws in the concrete liner as well as the source of the underlying problem. Manually intensive and destructive methods exist, however, because tunnels tend to be in high use and generally experience high traffic density, closures are undesirable, costly and in many cases impractical. Some tunnels have been in service for decades and because evaluating deterioration in these structures can be difficult, very little is sometimes known about their true condition. Due to the limited methods of assessment and limited accessibility for inspection, this can lead to potential safety concerns and liability issues with motoring traffic. This paper discussed the investigation and use of ground penetrating radar (GPR) in evaluation of tunnel liners, based on SHRP2 Project R06G research. A new and innovative method of using GPR for tunnel evaluation was developed and demonstrated on two tunnels in Pittsburgh, PA. An articulating structure was developed and utilized to position an air-coupled antenna in close proximity to the liner surface, permitting high-speed inspection of all parts of the tunnel liner. GPR was able to detect delaminated shotcrete and debonded tile facing, areas of water saturated concrete liner, and identify possible areas of concrete deterioration and voids behind the liner.
机译:隧道评估呈现出具有挑战性的问题。巷道和铁路隧道由他们的设计非常受水分的恒定存在,即使在相对干燥的气候中也是如此。这可能导致许多问题,例如嵌入式加固和分层的腐蚀,衬里和亚基材料材料之间的空隙,以及通过衬里的水流和后面的水流,这有时会出现在遥控到水源的位置。面对瓷砖或其他表面材料的隧道可以成为混凝土衬垫中的剥离或掩模更深的缺陷以及潜在问题的来源。然而,由于隧道倾向于高使用并且通常经历高流量密度,封闭性,昂贵,并且在许多情况下,隧道往往具有很高的流量,而且在许多情况下都是不切实际的。几十年来,一些隧道已经在服务中,因为评估这些结构的恶化可能是困难的,有时候有时会知道其真实情况。由于评估方法有限和有限的检查方法,这可能导致驾驶交通的潜在安全问题和责任问题。本文探讨了地面穿透雷达(GPR)在隧道衬里评估的调查和使用,基于SHRP2项目R06G研究。在Pittsburgh,PA的两个隧道上开发了一种新的和创新的使用GPR进行隧道评估的方法。开发并利用铰接结构,以将空气耦合天线靠近衬里表面定位,允许隧道衬里的所有部件的高速检查。 GPR能够检测分层的喷丸和剥离瓷砖面向水饱和混凝土衬垫的区域,并识别衬里后面的混凝土劣化和空隙的可能区域。

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