首页> 外文会议>Society of Petroleum Engineers international symposium on oilfield corrosion >Effect of Environmental Contamination on the Susceptibility of Corrosion-Resistant Alloys to Stress Corrosion Cracking in High-Density Completion Brines
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Effect of Environmental Contamination on the Susceptibility of Corrosion-Resistant Alloys to Stress Corrosion Cracking in High-Density Completion Brines

机译:环境污染对高密度完成盐水耐腐蚀合金耐腐蚀裂缝的敏感性的影响

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There has been renewed interest in the corrosivity of highdensity well completion and packer fluids in recent years following a series of failures of Corrosion Resistant Alloy (CRA) tubing strings from the annular side as a result of stress corrosion cracking (SCC). It is now realised that the original corrosion testing carried out on traditional halide-based completion and packer brines may have been too cursory, and missed some important environmental factors that make CRA susceptible to SCC in these fluids. New studies have shown that some CRA become susceptible to SCC in halide brines charged with CO2 and H2S, but there remain some uncertainties about the boundary conditions that trigger the SCC. The objective of the laboratory experiments described in this paper was to examine how the contamination of highdensity brines with oxygen, chlorides and CO2 might influence the susceptibility of CRA to SCC under high temperature-high pressure (HTHP) conditions. Our results highlight the increased risk of SCC occurring in CRA tubular materials when bromide-based completion brines become contaminated with oxygen or CO2 during field use in HTHP wells. Our tests also indicate that similar contamination of formate-based completion brines is less likely to create SCC problems in CRA tubular materials in HTHP wells. We conclude that the current North Sea trend for using formate-based completion fluids in place of bromides may provide better insurance against SCC -related tubing failures.
机译:由于应力腐蚀裂纹(SCC),近年来近年来近年来近年来近年来近年来对高密度井完成和包装液的腐蚀性进行了兴趣。由于应力腐蚀裂缝(SCC),耐腐蚀合金(CRA)管道串的一系列故障。现在意识到,在传统的基于卤化物的完工和包装丝水上进行的原始腐蚀测试可能已经过于粗略,并且错过了一些重要的环境因素,使CRA易受这些流体中的SCC的影响。新的研究表明,一些CRA在卤化物盐水中易受SCC的影响,该CO 2和H2S被带电,但是涉及触发SCC的边界条件存在一些不确定性。本文中描述的实验室实验的目的是检查如何在高温高压(HTHP)条件下对CRA至SCC的敏感性的污染。当在HTHP井中的现场使用期间,当基于溴的完整盐水污染氧气或二氧化碳时,我们的结果突出了CRA管状材料中发生的SCC风险。我们的测试还表明,基于格式的完整盐水的类似污染不太可能在HTHP井中创造CRA管状材料中的SCC问题。我们得出结论,目前使用基于格式的北海的北海趋势代替溴化物可以提供更好的免受SCC相关管道故障的保险。

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