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Enhancing the Drag Reduction Phenomenon within a Rotating Disk Apparatus Using Polymer-Surfactant Additives

机译:使用聚合物表面活性剂添加剂增强转盘设备内的减阻现象

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Pipelines and tubes play important roles in transporting economic liquids, such as water, petroleum derivatives, and crude oil. However, turbulence reduces the initial flow rate at which liquids are pumped, thereby making liquid transportation through pipelines inefficient. This study focuses on enhancing the drag reduction (DR) phenomenon within a rotating disk apparatus (RDA) using polymer-surfactant additives. The complex mixture of polyisobutylene (PIB) and sodium dioctyl sulfosuccinate (SDS) was used. These materials were tested individually and as a complex mixture in RDA at various concentrations and rotational speeds (rpm). The morphology of this complex was investigated using transmission electronic microscopy (TEM). The reduction of the degradation level caused by the continuous circulation of surfactant additives in RDA could improve the long-term DR level. Experimental result shows that the maximum %DR of the complex mixture was 21.455% at 3000 rpm, while the PIB and SDS were 19.197% and 8.03%, respectively. Therefore, the complex mixture had better performance than these substances alone and were highly dependent on the alkyl chain of the surfactant.
机译:管道在运输经济液体(例如水,石油衍生物和原油)中起着重要作用。然而,湍流降低了泵送液体的初始流速,从而使通过管道的液体输送效率低下。这项研究的重点是使用聚合物表面活性剂添加剂增强转盘设备(RDA)内的减阻(DR)现象。使用了聚异丁烯(PIB)和磺基琥珀酸二辛酯钠(SDS)的复杂混合物。这些材料分别以各种浓度和转速(rpm)在RDA中作为复杂混合物进行测试。使用透射电子显微镜(TEM)研究了该复合物的形态。表面活性剂添加剂在RDA中连续循环引起的降解水平降低可以提高长期DR水平。实验结果表明,复合物混合物在3000 rpm时的最大%DR为21.455%,而PIB和SDS分别为19.197%和8.03%。因此,复杂混合物比单独的这些物质具有更好的性能,并且高度依赖于表面活性剂的烷基链。

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