Experimental Research on Cationic Surfactants in the Drag Reduction of Water Injection Pipeline

Ying Yuan, J. Jing, Ran Yin, Peiyu Jing, Jianfei Hu
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引用次数: 3

Abstract

To achieve the throughput increase and drag reduction of the water injection pipeline for offshore oil fields, this paper takes the cationic surfactant solution as the research object and explores the feasibility of applying the additive drag reduction technology to the water injection pipelines through the rheological test and drag reduction simulation device. The experimental results show that the cetyltrimethylammonium chloride (CTAC) selected initially has excellent thixotropy, and the viscosity recovery rate within 300 seconds can reach more than 97%. In addition, CTAC/NaSal (sodium salicylate) solution has strong oil resistance and salt tolerance. As the oil concentration increases from 0 to 6,000 ppm, the viscosity only decreases by 8.24%; as the salt concentration increases from 0 to 6,000 ppm, the maximum viscosity growth rate is 87.08%. Furthermore, the CTAC/NaSal has good temperature resistance, which enhances with the increase of concentration. The recommended concentration of drag reducer is 400 ppm, and the maximum drag reduction rate, throughput increase rate, pressure drop reduction rate is 74.19, 76.76, and 67.99%, respectively. Therefore, the CTAC/NaSal solution has broad application prospects in the drag reduction of water injection pipelines.
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阳离子表面活性剂在注水管道减阻中的实验研究
为实现海上油田注水管道的增产减阻,本文以阳离子表面活性剂溶液为研究对象,通过流变试验和减阻模拟装置,探索添加剂减阻技术应用于注水管道的可行性。实验结果表明,初步选择的十六烷基三甲基氯化铵(CTAC)具有优异的触变性,300秒内的粘度回收率可达97%以上。此外,CTAC/NaSal(水杨酸钠)溶液具有较强的耐油性和耐盐性。当油浓度从0增加到6000 ppm时,粘度仅下降8.24%;当盐浓度从0增加到6000 ppm时,最大粘度增长率为87.08%。此外,CTAC/ nose具有良好的耐温性,且随浓度的增加而增强。推荐的减阻剂浓度为400 ppm,最大减阻率为74.19%,吞吐量增加率为76.76,压降降低率为67.99%。因此,CTAC/鼻腔溶液在注水管道减阻方面具有广阔的应用前景。
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