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Numerical Case Study on the LDIE Degradation Occurred in the Vent Header of a High Pressure Feedwater Heater

机译:高压给水加热器排气管上LDIE降解的数值案例研究。

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Piping installed in nuclear power plants is affected by various types of degradation mechanisms and may be ruptured due to gradual thinning. The degradation mechanisms such as flow-accelerated corrosion (FAC), cavitation, liquid droplet impingement erosion (LDIE), etc., can lead to costly outages and repairs and possibly affect plant reliability. In August 2008, the header pipe in the high pressure feedwater heater vent system leaked at a Korean nuclear power plant. After cutting the pipe during refueling outage, it was identified that the leak was due to LDIE. This paper presents the numerical analysis results, using various multi-phase models of ANSYS FLUENT for the purpose of identifying the cause of the LDIE. The numerical analysis methods which are most similar to the damage of the pipe are proposed for the comparison of analysis results with each multi-phase model.
机译:安装在核电厂中的管道会受到各种类型的降解机制的影响,并可能由于逐渐变薄而破裂。诸如加速流动腐蚀(FAC),气蚀,液滴冲击侵蚀(LDIE)等降解机制可能导致昂贵的停机和维修费用,并可能影响工厂的可靠性。 2008年8月,高压给水加热器通风系统的总管在韩国一家核电站泄漏。在加油中断期间切断管道后,可以确定泄漏是由于LDIE引起的。本文使用ANSYS FLUENT的各种多阶段模型来给出数值分析结果,以识别LDIE的原因。提出了与管道损伤最相似的数值分析方法,以比较每个多相模型的分析结果。

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