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首页> 外文期刊>International Journal of Polymer Analysis and Characterization >Characterization of the drag-reducing nature of long-chain polymer-water solutions through atomization
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Characterization of the drag-reducing nature of long-chain polymer-water solutions through atomization

机译:通过雾化表征长链聚合物 - 水溶液的减压性质

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摘要

Inclusion of minute concentrations of elongated long chain polymers is known to exhibit drastic reduction in frictional losses for turbulent fluid flows. The polymer chains interact with solvent molecules to act as eddy stress absorbers causing reduction in drag and inducing the viscoelastic nature in the fluid layer. In this work, we propose a characterization method for viscoelastic behavior of polymer-water solutions using a spray atomization experiment. The methodology is demonstrated for polyacrylamide and polyethylene oxide-based aqueous solutions. The experimental technique assesses the nature of the fluid using a predefined parameter, impact ratio (R). Computational fluid dynamics simulations of spray atomization are performed to validate the experimental values of the impact ratio. The simulation results indicate coherence with the experimental data, and are concordant with the reported behavior of such solutions in the literature.
机译:已知包含细长的长链聚合物的微小浓度,表现出湍流流体流动的摩擦损失急剧下降。 聚合物链与溶剂分子相互作用,以充当涡粘剂吸收剂,导致拖曳和诱导流体层中的粘弹性性质。 在这项工作中,我们提出了一种使用喷雾雾化实验提出了一种用于聚合物 - 水溶液的粘弹性行为的表征方法。 对聚丙烯酰胺和基于聚环氧乙烷的水溶液进行说明该方法。 实验技术使用预定义的参数,影响率(R)评估流体的性质。 进行喷雾雾化的计算流体动力学模拟以验证冲击率的实验值。 仿真结果表明与实验数据的连贯性,并且与文献中这些解决方案的报告行为相辅相成。

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