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Effective Corrosion Mitigation Exploiting Glass Reinforced Epoxy Lined Tubulars in Offshore Producing Injection Wells

机译:在海上生产和注入井中开发玻璃纤维增​​强环氧衬里管材以有效缓解腐蚀

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Corrosion in offshore well completions can lead to serious well integrity problems and costly workover operations. Although carbon steel is an ideal material for most completions, under certain conditions corrosion can attack and severely damage carbon steel equipment. Corrosion resistant alloys (CRA) are a good option but come with the considerable downside of very high cost. A relatively simple and cost effective approach to protect completion equipment against these corrosive elements is to line carbon steel completion tubulars with a non-metallic Glass Reinforced Epoxy (GRE). The GRE material properties provide excellent protection against a range of conditions including; highly corrosive fluids, erosive granular materials, Carbon dioxide (CO_2), Hydrogen Sulfide (H_2S) and acid treatments.The GRE lined Carbon steel is capable of combatting a range of corrosive environments in oil producers, water injectors / supply wells, including water with high concentration of total dissolved solids (TDS), chloride and sulfates and oil with high levels of H_2S and CO_2. The steel tubing is protected from these unforgiving ecosystems by lining the inside of the tubing with one continuous GRE tube. To secure the GRE lining and to increase the strength, a cement is pumped down the narrow annulus between the GRE lining and tubing internal wall. This procedure is relatively simple with the resultant GRE lined tubing having exactly the same tubing strength properties as the bare tubing.The primary method for detecting any well integrity problems with water injector wells are from determining high pressures in the tubing casing annulus (TCA). To date, all of the water injector wells installed with 7" GRE lined tubing have remained integral with no indication of any corrosion. Several of the oil producer and water supply wells that were lined with GRE have subsequently been worked over to replace faulty equipment; primarily electrical submersible pumps (ESP's). Encouragingly, the condition of the recovered GRE tubing had suffered no corrosion, scaling or other degradation benefiting from the GRE protection.The non-metallic GRE material is exceptionally robust with notable longevity and very resistant to any scale build-ups, leading to improved flow assurance. At the same time being tough enough to withstand any routine well intervention for logging, acid stimulation and other applications. The durable qualities andchemical characteristics of these non-metallic materials in downhole completions is likely to expand in the coming years, with increasing applications being found.
机译:海上完井完井的腐蚀会导致严重的完井问题和昂贵的修井作业。尽管碳钢是大多数完井的理想材料,但在某些条件下,腐蚀会腐蚀并严重损坏碳钢设备。耐腐蚀合金(CRA)是一个不错的选择,但缺点是成本很高。保护完井设备免受这些腐蚀性元素影响的相对简单且经济高效的方法是在碳钢完井管中衬上非金属玻璃纤维增​​强环氧树脂(GRE)。 GRE材料的性能可在多种条件下提供出色的保护,包括:高腐蚀性液体,腐蚀性颗粒材料,二氧化碳(CO_2),硫化氢(H_2S)和酸处理。GRE衬里碳钢能够抵抗采油厂,注水器/供水井中的各种腐蚀性环境,包括高浓度的总溶解固体(TDS),氯化物和硫酸盐以及高含量的H_2S和CO_2的油。钢管内部用一根连续的GRE管衬里,以保护钢管免受这些有害的生态系统的侵害。为了固定GRE衬里并提高强度,将水泥沿GRE衬里和管道内壁之间的狭窄环空泵入。此过程相对简单,因为最终得到的GRE衬里管道具有与裸管道完全相同的管道强度特性。检测注水井的任何井完整性问题的主要方法是确定管道套管环空(TCA)中的高压。迄今为止,所有安装有7“ GRE衬里管道的注水井都保持完整,没有任何腐蚀迹象。随后,一些衬有GRE的采油井和供水井也进行了维修,以更换有故障的设备。令人鼓舞的是,受益于GRE保护,回收的GRE管道的状况没有受到腐蚀,结垢或其他退化。堆积物,从而提高了流量保障;同时,其强度足以抵御测井,酸增产和其他应用中的任何常规油井干预,这些非金属材料在井下完井过程中的持久质量和化学特性很可能会扩大在未来几年中,随着越来越多的应用程序被发现。

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