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首页> 外文期刊>Rheologica Acta >Rheological characteristics of trimethylolethane hydrate slurry treated with drag-reducing surfactants
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Rheological characteristics of trimethylolethane hydrate slurry treated with drag-reducing surfactants

机译:减阻表面活性剂处理的三羟甲基乙烷水合物浆料的流变特性

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Rheological characteristics of trimethylolethane (TME) clathrate–hydrate slurry treated with drag-reducing surfactants were investigated. Friction coefficients and apparent viscosities were measured when the concentration of TME and its hydrate fraction treated with and without drag-reducing surfactants were changed in several steps. From the results, it is found that the surfactant addition causes effective drag reduction in a pipe flow when the hydrate fraction becomes high, while effective drag reduction disappears in the cases of low hydrate fraction. The results of viscosity measurements indicate that the TME molecules disturb the formation of shear-induced structures (SIS) causing drag reduction phenomena. To investigate this interaction between TME and surfactant micelles, the effect of TME concentration on viscosity and relaxation time of solutions was discussed. From this, it was found out that there exists a critical concentration of TME on the formation of SIS and that it becomes larger as shear rate increases. Thus, we conclude that this interaction between TME and micellar structures causes less drag reduction for the cases of low hydrate fraction, while the drag reduction appears in cases of high hydrate fraction because TME concentration in liquid phase becomes small.
机译:研究了减阻表面活性剂处理的三羟甲基乙烷(TME)笼形水合物浆料的流变特性。当使用和不使用减阻表面活性剂处理的TME及其水合物级分的浓度在几步中发生变化时,测量摩擦系数和表观粘度。从该结果发现,当水合物分数变高时,表面活性剂的添加导致管流中的有效减阻,而在低水合物分数的情况下,有效减阻消失。粘度测量结果表明,TME分子干扰了剪切诱导结构(SIS)的形成,从而导致减阻现象。为了研究TME和表面活性剂胶束之间的相互作用,讨论了TME浓度对溶液粘度和松弛时间的影响。由此可知,在SIS的形成中存在TME的临界浓度,并且随着剪切速率的增加而变大。因此,我们得出结论,在低水合物分数的情况下,TME和胶束结构之间的相互作用导致较少的阻力减少,而在高水合物分数的情况下,阻力减少出现,因为液相中TME的浓度变小。

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