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CORROSION INHIBITOR EFFICIENCY LIMITS AND KEY FACTORS

机译:缓蚀剂效率极限和关键因素

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The selection of corrosion inhibition in combination with carbon steel is an economically preferable corrosion control strategy for many oil & gas projects. The traditional approach to evaluate the viability of corrosion inhibition combines an assessment of corrosion inhibitor efficiency and availability. It is often assumed that an inhibited rate of 0.1 mm/year can be achieved and focus is given to the desired availability. New projects are exploiting reservoirs with fluids of increasing complexity and more aggressive environments. Therefore, achieving a high inhibitor efficiency is key to project delivery and integrity risk management. Extensive inhibitor testing data has been reviewed across a range of environmental conditions. The influence of environmental parameters (including corrosivity, temperature, brine salinity and hydrodynamics) on inhibitor performance has been analyzed. The effect of the parameters and relative criticality to achieving acceptable inhibitor performance has been defined and a matrix has been developed to enable assessment of the likelihood of achieving successful inhibition. Test data is presented to support the analysis.
机译:对于许多油气项目,选择与碳钢结合使用的缓蚀剂在经济上是优选的缓蚀策略。评估腐蚀抑制能力的传统方法结合了对腐蚀抑制剂效率和可用性的评估。通常认为可以达到0.1毫米/年的抑制率,并着眼于所需的可用性。新的项目正在开发具有越来越复杂的流体和更具侵略性的环境的油藏。因此,达到较高的抑制剂效率是项目交付和完整性风险管理的关键。广泛的抑制剂测试数据已在各种环境条件下进行了审查。分析了环境参数(包括腐蚀性,温度,盐水盐度和流体动力学)对抑制剂性能的影响。已经定义了参数的影响和达到可接受抑制剂性能的相对临界度,并开发了一个矩阵来评估成功抑制的可能性。提供测试数据以支持分析。

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