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首页> 外文期刊>Journal of Dispersion Science and Technology >An electrorheological study on the behavior of water-in-crude oil emulsions under influence of a DC electric field and different flow conditions
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An electrorheological study on the behavior of water-in-crude oil emulsions under influence of a DC electric field and different flow conditions

机译:直流电场和不同流动条件影响下原油包水乳状液行为的流变学研究

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The influence of an applied DC electric field on viscosity and droplet size distribution of different water-in-crude oil emulsions was monitored in order to investigate the induction of coalescence of the water droplets. The effects caused by the voltage imposition were studied by rheological analysis and the validity of the obtained results was discussed, comparing with the features of real electrocoalcscer systems. A low field NMR technique (CPMG NMR) and digital video microscopy (DVM) were used to elucidate the behavior of the emulsions. Experiments performed at low shear rate with increasing electric field magnitude showed an increase in viscosity until a critical value. E-CRIT was reached. Thereafter coalescence occurred and viscosity decreased irreversibly below its initial value. The electrorheological behavior of the emulsions can be attributed to the organization (flocculation) of water droplets induced by the electric field, accompanied by an increase in viscosity. The structure breaks down as the shear rate is increased, leading to a decrease in viscosity. Experiments performed at high shear showed only a small decline in the viscosity. Although it was evident that coalescence took place, it did not involve the whole sample, because the electrodes were uncoated. As a direct consequence, the mean value of the droplet size within the emulsion did not change noticeably. Nonetheless this mean value was less recurrent and the formation of droplets of very large diameter occurred.
机译:监测施加的直流电场对不同原油包水型油乳液的粘度和液滴尺寸分布的影响,以研究引起液滴聚结的原因。通过流变分析研究了施加电压引起的影响,并与实际电炉系统的特性进行了比较,讨论了所得结果的有效性。使用低场NMR技术(CPMG NMR)和数字视频显微镜(DVM)来阐明乳液的行为。在低剪切速率下随电场强度的增加而进行的实验表明,粘度增加直至达到临界值。达到E-CRIT。此后发生聚结并且粘度不可逆地降低到其初始值以下。乳液的电流变行为可以归因于电场引起的水滴的组织(絮凝),同时伴随着粘度的增加。随着剪切速率的增加,结构破裂,导致粘度降低。在高剪切下进行的实验表明粘度仅下降很小。尽管很明显发生了聚结,但由于电极未镀膜,因此并未涉及整个样品。直接的结果是,乳液中液滴尺寸的平均值没有明显变化。尽管如此,该平均值很少重复出现,并且形成了直径很大的液滴。

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