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Effect of corrosion inhibitor on water wetting and carbon dioxide corrosion in oil-water two-phase flow.

机译:腐蚀抑制剂对油水两相流中水润湿性和二氧化碳腐蚀的影响。

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摘要

The internal corrosion of flowlines and pipelines made from carbon steel is encountered in the oil and gas industry. The corrosion process is primarily associated with the presence of free water in offshore or onshore production, particularly when it is accompanied by carbon dioxide gas. Corrosion inhibitor injection in oilfields is a very common and useful method for pipeline internal corrosion prevention. There is a need to understand the physics of phase wetting, carbon dioxide corrosion and the effect of corrosion inhibitor on those two processes in oil-water two-phase flow.;In this study, the flow patterns and phase wetting regimes of oil-water two-phase flow were experimentally investigated in a large scale flow loop. Five major flow patterns were observed within the test flow conditions by flow visualization. Three types of phase wetting regimes (water wetting, oil wetting and intermittent wetting) were found by using a carbon steel test section consisting of wall conductance probes, wall sampling and corrosion monitoring. Based on experimental results, phase wetting maps were generated for model oil and five crude oils in the flow loop tests.;Following the large scale flow loop tests, a small scale flow apparatus, called a doughnut cell was developed to simulate phase wetting occurring in oil-water two-phase pipe flow. Phase wetting maps were created for model oil and five crude oils in the doughnut cell tests.;Two generic inhibitors, quaternary ammonium chloride and fatty amino were studied in this work. Corrosion inhibition tests showed that a direct exposure to oil phase enhances the performance of fatty amino inhibitor. Both inhibitors produce not only a reduction in oil-water interfacial tension, which promotes easier water entrainment by the oil, but also changes the wettability of the steel surface from hydrophilic to hydrophobic, which may reduce the possibility of CO2 corrosion.;A mechanistic phase wetting prediction model was developed to predict the transition between water breakout and full water entrainment. The model was validated with the experimental results of model oil and crude oils obtained from flow loop and doughnut cell tests. The model predictions have a good agreement with empirical results of model oil, but the model overpredicts the critical oil velocity of full water entrainment for all tested crude oils. The phase wetting prediction model is also used to correct the geometry difference between doughnut cell and flow loop. A corrosion inhibition model was built based on fitting corrosion inhibition test results with the Langmuir adsorption isotherm. A strategy is proposed to predict uninhibited and inhibited CO 2 corrosion rate in oil-water two-phase pipe flow by integrating phase wetting, CO2 corrosion and inhibition models.
机译:在石油和天然气行业中,碳钢制成的流水线和管道的内部腐蚀很普遍。腐蚀过程主要与海上或陆上生产中游离水的存在有关,特别是在伴随有二氧化碳气体的情况下。在油田中注入腐蚀抑制剂是预防管道内部腐蚀的一种非常普遍和有用的方法。有必要了解油水两相流中相润湿,二氧化碳腐蚀和缓蚀剂对这两个过程的影响的物理意义;本研究中,油水的流态和相润湿方式在大型流量环中对两相流进行了实验研究。通过流动可视化,在测试流动条件下观察到五个主要流动模式。通过使用由壁电导探针,壁采样和腐蚀监测组成的碳钢测试部分,发现了三种类型的相润湿方式(水润湿,油润湿和间歇润湿)。根据实验结果,在流动回路测试中生成了模型油和5种原油的相润湿图。;在大规模流动回路试验之后,开发了一种称为甜甜圈单元的小型流动装置,以模拟油中发生的相润湿。油水两相流。在甜甜圈细胞测试中为模型油和五种原油创建了相润湿图。;这项工作研究了两种通用抑制剂:氯化季铵和脂肪氨基。腐蚀抑制测试表明,直接暴露于油相可增强脂肪氨基抑制剂的性能。两种抑制剂不仅可以降低油水界面张力,从而促进油更容易夹带水,还可以将钢表面的润湿性从亲水性变为疏水性,从而可以减少CO2腐蚀的可能性。开发了润湿预测模型,以预测突水和充分夹水之间的过渡。通过从流动回路和甜甜圈试验获得的模型油和原油的实验结果验证了该模型。该模型预测与模型油的经验结果具有很好的一致性,但是该模型高估了所有测试原油的全水夹带临界油速度。相润湿预测模型也用于校正甜甜圈单元和流动环之间的几何差异。根据Langmuir吸附等温线拟合腐蚀抑制测试结果,建立腐蚀抑制模型。通过整合相润湿,CO2腐蚀和抑制模型,提出了一种预测油水两相流中CO 2腐蚀速率的方法。

著录项

  • 作者

    Li, Chong.;

  • 作者单位

    Ohio University.;

  • 授予单位 Ohio University.;
  • 学科 Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 198 p.
  • 总页数 198
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:16

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