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Failure analysis and modeling of super heater tubes of a waste heat boiler thermally coupled in ammonia oxidation reactor

机译:氨氧化反应器热耦合废热锅炉过热器失效分析与建模

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Repeated failures have been observed in the outlet region of a few super heater tubes made of 1 Cr-0.5Mo steel integrated in a waste heat boiler thermally coupled in an ammonia oxi dation reactor. A case study of a failed tube running at around 37,440 h was presented. The bulging of some parts of super heater tubes were observed while the tubes were under nor mal operational temperature of 480 ℃ and internal pressure of 44 bar. The tube hardness measurements were carried out on the selected super heater tubes including those of rup tured, unruptured and headers. The relatively high value of hardness, 260 HV, of ruptured part compared to other parts indicates that some phase transformation probably occurred for such a low-alloy lCr-0.5Mo steel which led to lower thermal resistance. The dynamic modeling including conservation of energy has been developed in order to show the tube overheating. The main root cause of repeated failures of the super heater tubes was short-term overheating following rapid cooling of the tubes due to sudden stoppage of steam flow inside connecting tubes in the event of unit shut down which reduced the thermal resistance of the tubes over time.
机译:在一些由1 Cr-0.5Mo钢制成的过热器管的出口区域中观察到重复的故障,这些过热器集成在与氨氧化反应器热耦合的废热锅炉中。提出了一个在37,440 h左右运行的失效管的案例研究。在正常工作温度为480℃,内部压力为44 bar的条件下,观察到过热管的某些部分鼓胀。管的硬度测量是在选定的过热管上进行的,包括破裂的,未破裂的和集管的。与其他零件相比,断裂零件的相对较高的硬度值为260 HV,这表明这种低合金lCr-0.5Mo钢可能会发生某些相变,从而导致较低的耐热性。已经开发出包括能量守恒在内的动态模型,以显示管子过热。过热器管反复失效的主要原因是在快速冷却后,由于在连接器关闭时,由于连接管内部蒸汽流动突然停止而导致的蒸汽突然中断,从而导致管的热阻随着时间的推移而突然停止,从而导致短期过热。 。

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