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Corrosion and Scaling Monitoring under Real Downhole Conditions in Sour Gas Wells

机译:酸气井实际井下条件下的腐蚀和缩放监测

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One of the major challenges of corrosion and scaling management in sour gas wells is to effectively monitor corrosion and scaling under real-flow regime conditions. It is very difficult to simulate the actual environment and flow conditions in laboratory experiments to study downhole corrosion and scale formation. Understanding the corrosion and scaling mechanism under downhole conditions is very important in order to develop effective prevention and mitigation strategies in a timely manner. An advanced downhole corrosion and scale monitoring (DCSM) tool has been designed and developed to monitor corrosion and scale formation in sour gas wells. This monitoring system represents significant improvements over the current industrial technology by directly measuring corrosion and scale deposition in real downhole conditions using exchangeable coupons with identical metallurgy as the downhole completion tubing. A slick line with a retrievable high-expansion gauge hanger was used to deploy and anchor the DCSM downhole at the desired depth. The tool was retrieved after 3 months exposure to the reservoir conditions for post-laboratory analysis. Advanced analytical techniques were carried out to understand the corrosion and scaling mechanism, including SEM, EDS, XRD, and surface profile measurement besides quantifying the weight changes. The results showed that a thin layer (~3-4 ?m in thickness) of iron sulfide scale was deposited on the surface of coupon. It served as a protective layer to prevent and reduce further corrosion and scale buildup. To understand the mechanisms of scaling, the surface scale deposit was removed by corrosion inhibited acidic solution. The surface profile measurement showed localized pitting corrosion which appeared on the surface of coupon, which indicates that corrosion happened first followed by scale layer deposition on metal coupon surface. The newly developed DCSM tool has an advanced design which allows direct corrosion and scaling monitoring under downhole conditions. Post-laboratory analysis on retrieved coupons can provide corrosion and scaling mechanism for specific metallurgy under real downhole conditions. Proper corrosion and scale management programs could be designed to minimize the effects of corrosive gases. The developed tool can be used to monitor the effectiveness of the corrosion treatment and can be deployed in sweet gas wells, oil wells and water supplier wells.
机译:酸性气体井中腐蚀和缩放管理的主要挑战之一是在实际流动状态下有效监测腐蚀和缩放。在实验室实验中模拟实际环境和流动条件非常困难,以研究井下腐蚀和鳞片形成。了解井下条件下的腐蚀和缩放机制非常重要,以便及时开发有效的预防和缓解策略。设计和开发了先进的井下腐蚀和尺度监测(DCSM)工具,以监测酸气井中的腐蚀和鳞片形成。该监测系统通过使用具有相同冶金作为井下完成管的可交换优惠券直接测量实际井下条件中的腐蚀和缩放沉积,通过直接测量实际井下条件的腐蚀和缩放沉积来实现显着的改进。使用可检索的高膨胀表吊架的光滑线用于在所需深度处部署和锚定DCSM井下。在3个月内接触到后期实验室分析的储层条件后,检测该工具。除了量化重量变化之外,还进行了高级分析技术以了解腐蚀和缩放机制,包括SEM,EDS,XRD和表面轮廓测量。结果表明,在优惠券表面上沉积硫化物尺度的薄层(〜3-4μm厚)。它用作保护层,以防止和减少进一步的腐蚀和规模累积。要了解缩放的机制,通过腐蚀抑制酸性溶液除去表面垢沉积物。表面轮廓测量显示出在优惠券表面上出现的局部点蚀腐蚀,这表明首先发生腐蚀,然后在金属优惠券表面上进行比例层沉积。新开发的DCSM工具具有先进的设计,可在井下条件下直接腐蚀和缩放监控。检索式优惠券的后实验室分析可以为真实井下条件下的特定冶金提供腐蚀和缩放机制。可以设计适当的腐蚀和规模管理计划以最大限度地减少腐蚀性气体的影响。开发的工具可用于监测腐蚀处理的有效性,可以部署在甜味煤气井,油井和供水器井中。

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