Integrity Assessment of Linepipes for Transporting High Pressure Hydrogen Based on ASME B31.12

N. Ishikawa, T. Sakimoto, J. Shimamura, Jiawei Wang, Yong-Yi Wang
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Abstract

Current hydrogen pipeline code ASME B31.12 requires that pipe materials shall be qualified for adequate resistance to fracture in hydrogen gas based on Article KD-10 of ASME BPVC, Sec. VIII, Division 3. In order to assess the integrity of a hypothetical hydrogen pipeline, fracture toughness and fatigue crack growth tests under gaseous hydrogen at up to 21MPa were first conducted using a recent Grade X65 linepipe with fine grained bainitic microstructure. Fatigue crack growth in the pressurized linepipe with semi-elliptical surface flaw was calculated by the procedures described in the Article KD-10 using the da/dN data obtained from the X65 linepipe and the fatigue crack growth equation specified in ASME B31.12. Pressure cycles were applied to the pipe with a surface flaw to investigate the effects of pressure range and design factor. The critical crack size was analyzed using the failure assessment diagram (FAD) concept which is also specified in Article KD-10. Significant fatigue crack growth was not observed under the lower design factor such as fD = 0.5 with small pressure range, while fatigue crack growth was drastically accelerated under the higher design factor and large pressure fluctuation. Integrity assessment by FAD analysis for longitudinal semi-elliptical crack and girth weld flaw clarified how the toughness value affects the critical condition.
基于ASME B31.12的高压氢气输送管道完整性评价
现行的氢气管道规范ASME B31.12要求,根据ASME BPVC第VIII章第3部分第KD-10条,管道材料应具有足够的抗氢气断裂能力。为了评估假设氢气管道的完整性,首先使用具有细晶贝氏体组织的X65级管道进行了高达21MPa的气体氢气断裂韧性和疲劳裂纹扩展测试。采用X65管线的da/dN数据和ASME B31.12规定的疲劳裂纹扩展方程,按照KD-10中所述的方法计算带半椭圆表面缺陷的加压管线的疲劳裂纹扩展。对带有表面缺陷的管道进行了压力循环试验,研究了压力范围和设计系数的影响。采用KD-10中规定的失效评估图(FAD)概念对临界裂纹尺寸进行分析。当设计系数fD = 0.5、压力范围较小时,疲劳裂纹扩展不明显;当设计系数较大、压力波动较大时,疲劳裂纹扩展明显加快。采用FAD分析方法对纵向半椭圆裂纹和环焊缝缺陷进行完整性评价,阐明了韧性值对临界条件的影响。
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