研究了不溶性添加剂类型对原油湍流系统减阻性能的影响

Q3 Environmental Science
W. Mahmood, Hayder A. Abdulbari, Asaad H. Laft
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引用次数: 0

摘要

本文研究了三种不溶性添加剂密度对原油减阻的影响。本文的目的是评价不溶性添加剂的密度对其在烃类流动介质中的减阻效果的影响。选择三种不同密度的粉末,分别是碳粉、玻璃粉和铜粉,密度分别为1710 kg/m3、2550 kg/m3和8950 kg/m3。湍流流动环境是在一个定制的旋转圆盘装置中创建的,最大转速为300 rpm。为了评估粉末密度的影响,选择粒径为100µm。所有的溶液都在精确的操作条件下进行了测试,转速范围在200到2200 rpm之间。实验结果表明,粉末密度对减阻性能有明显的影响。玻璃粉的减阻效果最好,而铜粉和碳粉的减阻效果较差。湍流程度对粉末减阻性能的影响是明显的,其中粉末与湍流结构(涡流)之间的相互作用决定了添加剂的湍流抑制效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigating the effect of insoluble additives type on the drag reduction performance in a crude oil turbulent flow system
In the present work, the effect of three insoluble additives densities on reducing the drag of crude oil was investigated. The objective of the present work is to evaluate the effect of the insoluble additive’s densities on their drag reduction efficiency in hydrocarbon flow medium. Three powders with different densities are chosen, namely carbon powder, glass powder, and copper powder, with a density of 1710 kg/m3, 2550 kg/m3, and 8950 kg/m3, respectively. The turbulence flow environment was created in a custom-made rotating disc apparatus with a maximum rotation speed of 300 rpm. To evaluate the effect of the powder density, the particle's size was chosen to be 100 µm. All the solutions were tested at the exact operating conditions with a rotation speed ranging between 200 to 2200 rpm. The experimental results showed a clear effect of the powder density on the drag reduction performance. The glass powders showed the highest drag reduction effect, while the copper and carbon powders were lower. The effect of the degree of turbulence on the drag reduction performance of the powders was clear, where the interaction between the powders and the turbulence structures (eddies) governed the turbulence-suppression efficiency of the additives.
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来源期刊
Acta Innovations
Acta Innovations Environmental Science-Environmental Engineering
CiteScore
3.90
自引率
0.00%
发文量
15
审稿时长
16 weeks
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