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Evaluation of near-drum thinning data in recovery boiler generating bank tubes

机译:回收锅炉生成库管中近鼓稀化数据的评估

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Near-drum thinning affects the fireside surface of recovery boiler generating bank tubes near the surface of the mud drum. Although sophisticated thickness scanning equipment has been developed to rapidly make tens of thousands of thickness measurements in the portion of a tube that is vulnerable to near-drum thinning, methods for using these data to evaluate fitness-for-service have not shown similar advances. Non-destructive testing companies typically use a technician's subjective judgment to identify the "thinnest reliable" thickness measurement on each tube. Some mills decide whether tubes can continue in operation or should be plugged or replaced based on this single thickness measurement. However, finite element analysis of the remaining strength of individual tubes thinned in the near-drum area suggests that it is essentially impossible to identify the weakest tubes from simple empirical rules. In the absence of an industry standard for evaluating these data, different mills could reach different conclusions about the fitness-for-service of a tube from the same data set. This paper reviews the technology for scanning the thickness of generating bank tubes and discusses approaches that have been used to identify the tubes most weakened by near-drum thinning and to evaluate the fitness-for-service of individual tubes.
机译:近鼓稀化会影响回收锅炉的火侧表面,从而在泥鼓表面附近产生排管。尽管已经开发出了先进的厚度扫描设备,可以在易受鼓形变薄影响的管子部分快速进行成千上万的厚度测量,但使用这些数据评估适用性的方法并未显示出类似的进步。无损检测公司通常使用技术人员的主观判断来确定每根管子上“最薄可靠”的厚度测量值。一些工厂根据这种单次厚度测量值来决定管是否可以继续运行,还是应该插拔或更换。但是,对在鼓附近区域变细的单个管的剩余强度的有限元分析表明,从简单的经验规则中确定最弱的管基本上是不可能的。在缺乏评估这些数据的行业标准的情况下,不同的工厂可能会根据同一数据集得出有关管材适用性的不同结论。本文回顾了用于扫描生成管的厚度的技术,并讨论了用于识别由于近鼓变薄而最薄弱的管以及评估单个管的适用性的方法。

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