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Development of Inspection Methodology for a Nuclear Piping Wall Thinning Caused by Erosion Using Ultrasonic B-Scan Measurement Device

机译:超声波B扫描测量装置对腐蚀引起的核管道壁变薄的检查方法的开发

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摘要

U.S. Electric Power Research Institute (EPRI) has developed CHECWORKS program and applied it to power plant piping lines since some lines were ruptured by flow-accelerated corrosion (FAC) in 1978. Nowadays the CHECWORKS program has been used to manage pipe wall thinning phenomena caused by FAC. However, various erosion mechanisms can occur in carbon-steel piping. Most common forms of erosion are cavitation, flashing, liquid droplet impingement erosion (LDIE), and Solid Particle Erosion (SPE). Those erosion mechanisms cause pipe wall thinning, leaking, rapturing, and even result in unplanned shutdowns of utilities. Especially, in two phase condition, LDIE damages a wide scope of plant pipelines. Furthermore, LDIE is the major culprit to cause such as power runback by pipe leaking. This paper describes the methodologies that manage wall thinning and also predict LDIE wall thinning area. For this study, current properties of two-phase condition are investigated and LDIE areas are selected. The areas are checked by B-Scan method to detect the effect of wall thinning phenomena.
机译:美国电力科学研究院(EPRI)开发了CHECWORKS程序,并将其应用于电厂管道,因为1978年某些管线因流动加速腐蚀(FAC)破裂。如今,CHECWORKS程序已用于处理引起的管壁变薄现象。由FAC。但是,碳钢管道中可能发生各种腐蚀机理。侵蚀的最常见形式是空化,闪蒸,液滴撞击侵蚀(LDIE)和固体颗粒侵蚀(SPE)。这些腐蚀机制会导致管壁变薄,泄漏,提速,甚至导致公用事业的计划外关闭。尤其是在两相情况下,LDIE会破坏广泛的工厂管道。此外,LDIE是导致诸如由于管道泄漏而造成的功率倒流的主要元凶。本文介绍了管理壁变薄并预测LDIE壁变薄面积的方法。在本研究中,研究了两相条件下的电流特性,并选择了LDIE区域。通过B扫描方法检查区域,以检测壁变薄现象的影响。

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