油气材料选择的挑战:经验和案例

P. Cavassi, Vittorio Chiodini, Stefano Franci, L. Torri
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引用次数: 0

摘要

本文结合实际案例,概述了石油和天然气材料选择的最新问题,如耐高浓度H2S,以及碳钢和复合管在管道生产中的质量控制。讨论中的每个主题首先描述了市场上可用的材料,失效机制和使用寿命期间可能产生的后果方面的相关问题。然后,通过对主要和最新的腐蚀相关会议的简要回顾,分析了面临的挑战。然后,参考近期海上开发项目的历史案例,介绍了公司的经验,重点介绍了所采取的技术解决方案和取得的主要成果。讨论的第一个挑战是管道材料的耐腐蚀性,用于输送含高浓度H2S的流体。用于大口径管道的碳钢管通常采用TMCP(热机械控制工艺)制造。在严重含酸的应用中,由于管道制造过程中表面可能产生坚硬区域,因此它们很容易发生SSC(硫化物应力开裂)。在管道生产过程中,新的无损检测方法已经被开发出来。此外,在H2S分压高于10 bar的条件下,对API 5L X52和X60管道样品进行了SSC试验,得到了令人惊讶的结果。包层和内衬管是TMCP碳钢的替代材料,但它们价格昂贵,而且只有少数制造商可用,因此交货时间长。此外,这些材料也存在技术问题,如在热处理过程中镍合金层中金属间相的析出。本文介绍了公司在海上项目中使用TMCP碳钢和复合管作为管道和扣式避雷器的经验。文中描述的腐蚀和开裂问题是比较新的问题,采用的技术解决方案也是比较新的。新的实地经验是对现有文献的补充。
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Challenges in O&G Material Selection: Experiences and Case Histories
The paper gives an overview of recent issues in Oil & Gas material selection, as resistance to high levels of H2S, and quality control during production of Carbon Steel and Clad pipes for pipelines, with reference to real cases. Each topic under discussion is first described showing the relevant issues in terms of materials available on the market, failure mechanisms and possible consequences during the service life. Then the challenges are analyzed by mean of a brief review based on the main and most recent corrosion related conferences. Then, making reference to case histories taken from recent offshore development projects, the Company experience is described, highlighting the technical solutions taken and the main results obtained. The first challenge discussed is the corrosion resistance of pipeline materials for transportation of fluids with high levels of H2S. The carbon steel pipes used for large diameters pipes are commonly manufactured with the TMCP, Thermo-Mechanical Controlled Process method. In severe sour service applications they showed to be susceptible to SSC, Sulfide Stress Cracking, due to hard zones that can originate at surface during pipe manufacturing. New non-destructive tests have been developed for the detection of hard zones during pipe production. Besides, SSC tests have been performed on API 5L X52 and X60 pipes samples at H2S partial pressure higher than 10 bar, which gave surprising results. Clad and lined pipes represent alternative materials to TMCP carbon steel, but they are expensive and only few manufacturers are available, with consequence in terms of long delivery time. Furthermore, these materials are not immune to technical problems, as the precipitation of intermetallic phases in the nickel alloy layer during heat treatment. The paper describes the Company experience made in offshore projects where both TMCP carbon steel and clad pipes have been used for pipelines and buckle arrestors. The corrosion and cracking problems described in the paper are relatively new, as well as the technical solutions adopted. New field experience represents additive information to existing literature.
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