Zhao Tianliang, Liu Zhiyong, Du Cuiwei, Hu Jianpeng, Li Xiaogang
Corrosion and Protection Center, University of Science and Technology Beijing, Beijing 100083, China.
Key Laboratory for Corrosion and Protection (MOE), Beijing 100083, China.
Materials (Basel). 2016 Sep 2;9(9):741. doi: 10.3390/ma9090741.
A modelling effort was made to try to predict the life of downhole tubes or casings, synthetically considering the effect of service influencing factors on corrosion rate. Based on the discussed corrosion mechanism and corrosion processes of downhole tubes, a mathematic model was established. For downhole tubes, the influencing factors are environmental parameters and stress, which vary with service duration. Stress and the environmental parameters including water content, partial pressure of H₂S and CO₂, pH value, total pressure and temperature, were considered to be time-dependent. Based on the model, life-span of an L80 downhole tube in oilfield Halfaya, an oilfield in Iraq, was predicted. The results show that life-span of the L80 downhole tube in Halfaya is 247 months (approximately 20 years) under initial stress of 0.1 yield strength and 641 months (approximately 53 years) under no initial stress, which indicates that an initial stress of 0.1 yield strength will reduce the life-span by more than half.
开展了一项建模工作,试图综合考虑服役影响因素对腐蚀速率的影响,来预测井下油管或套管的使用寿命。基于所讨论的井下油管腐蚀机理和腐蚀过程,建立了一个数学模型。对于井下油管,影响因素是环境参数和应力,它们会随服役时间而变化。应力以及包括含水量、硫化氢和二氧化碳分压、pH值、总压和温度在内的环境参数被认为是随时间变化的。基于该模型,预测了伊拉克哈勒法亚油田L80井下油管的使用寿命。结果表明,在初始应力为0.1屈服强度的情况下,哈勒法亚油田L80井下油管的使用寿命为247个月(约20年),在无初始应力的情况下为641个月(约53年),这表明0.1屈服强度的初始应力会使使用寿命缩短一半以上。