Failure Estimation Methods for Steam Generator Tubes With Wall-Thinning or Crack

Yoshihito Yamaguchi, A. Mano, Yinsheng Li
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Abstract

The steam generator (SG) tube is one of the important components in pressurized water reactors. Flaws such as wall-thinning or stress corrosion cracking have been reported in SG tubes. The burst pressure where both the internal and external pressures from the primary and secondary coolant systems are considered must be predicted to assess the structural integrity of SG tubes. Burst tests were performed by various organizations. On the basis of the test results, failure estimation methods were proposed. In this study, previous burst test data and existing failure estimation methods for SG tubes with wall-thinning or crack were investigated. As a result, the coefficient of the existing estimation method for SG tube with uniform wall-thinning was updated. In addition, failure estimation methods that are suitable for SG tubes with crack or local wall-thinning were proposed by considering the effects of the flaw shape and size on the burst pressure. The applicability of the failure estimation methods was confirmed by comparing the predicted results with the burst test data in actual SG tubes.
蒸汽发生器管壁变薄或裂纹的失效估计方法
蒸汽发生器(SG)管是压水堆的重要部件之一。在SG管中有壁薄或应力腐蚀开裂等缺陷的报道。为了评估SG管的结构完整性,必须预测来自一次和二次冷却剂系统的内外压力的破裂压力。爆炸试验由不同的组织进行。在试验结果的基础上,提出了故障估计方法。在研究中,研究了前人的爆炸试验数据和现有的含壁薄或裂纹的SG管的失效估计方法。对已有的均匀壁厚减薄SG管的系数估计方法进行了更新。此外,考虑缺陷形状和尺寸对破裂压力的影响,提出了适用于有裂纹或局部壁薄的SG管的失效估计方法。将预测结果与实际SG管爆炸试验数据进行对比,验证了失效估计方法的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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