Flow Characteristics of Drag-Reducing Surfactant Solutions
The objective of this study is to clarify the flow characteristics of drag-reducing flow and to elucidate the mechanism underlying this phenomenon. The surfactant and counter ion we used were Lipothoquad O/12 and sodium salicylate, respectively. The drag reduction rate (DR%) was measured by using a...
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EDP Sciences
2021-01-01
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Online Access: | https://www.matec-conferences.org/articles/matecconf/pdf/2021/02/matecconf_apcche21_02002.pdf |
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doaj-1726646ae2bb4bf3b15e3fc9bee3ba632021-01-15T10:19:29ZengEDP SciencesMATEC Web of Conferences2261-236X2021-01-013330200210.1051/matecconf/202133302002matecconf_apcche21_02002Flow Characteristics of Drag-Reducing Surfactant SolutionsSaeki TakashiKaide AyaThe objective of this study is to clarify the flow characteristics of drag-reducing flow and to elucidate the mechanism underlying this phenomenon. The surfactant and counter ion we used were Lipothoquad O/12 and sodium salicylate, respectively. The drag reduction rate (DR%) was measured by using a recirculating system with a diameter of 25.6 mm. We also measured the flow characteristics of the surfactant solutions with different concentrations and temperatures by using particle image velocimetry (PIV). From the experimental results, DR% at an average velocity of 2.0 m/s increased from 0 to 68% as the temperature increased from 10 to 40 °C at a constant concentration of surfactant (300 mg/L). From the velocity contour plot obtained from PIV, we found that the thickness of the lower-velocity region of the drag-reducing flow near the pipe wall was thick at 20 °C, whereas vortex motions seemed controlled at 30 °C. On the other hand, the lower-velocity region thickened as the concentration of the surfactant increased at 25°C. Even if the same level of drag-reducing effects occurred, the flow patterns were quite different depending on the concentration and temperature.https://www.matec-conferences.org/articles/matecconf/pdf/2021/02/matecconf_apcche21_02002.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Saeki Takashi Kaide Aya |
spellingShingle |
Saeki Takashi Kaide Aya Flow Characteristics of Drag-Reducing Surfactant Solutions MATEC Web of Conferences |
author_facet |
Saeki Takashi Kaide Aya |
author_sort |
Saeki Takashi |
title |
Flow Characteristics of Drag-Reducing Surfactant Solutions |
title_short |
Flow Characteristics of Drag-Reducing Surfactant Solutions |
title_full |
Flow Characteristics of Drag-Reducing Surfactant Solutions |
title_fullStr |
Flow Characteristics of Drag-Reducing Surfactant Solutions |
title_full_unstemmed |
Flow Characteristics of Drag-Reducing Surfactant Solutions |
title_sort |
flow characteristics of drag-reducing surfactant solutions |
publisher |
EDP Sciences |
series |
MATEC Web of Conferences |
issn |
2261-236X |
publishDate |
2021-01-01 |
description |
The objective of this study is to clarify the flow characteristics of drag-reducing flow and to elucidate the mechanism underlying this phenomenon. The surfactant and counter ion we used were Lipothoquad O/12 and sodium salicylate, respectively. The drag reduction rate (DR%) was measured by using a recirculating system with a diameter of 25.6 mm. We also measured the flow characteristics of the surfactant solutions with different concentrations and temperatures by using particle image velocimetry (PIV). From the experimental results, DR% at an average velocity of 2.0 m/s increased from 0 to 68% as the temperature increased from 10 to 40 °C at a constant concentration of surfactant (300 mg/L). From the velocity contour plot obtained from PIV, we found that the thickness of the lower-velocity region of the drag-reducing flow near the pipe wall was thick at 20 °C, whereas vortex motions seemed controlled at 30 °C. On the other hand, the lower-velocity region thickened as the concentration of the surfactant increased at 25°C. Even if the same level of drag-reducing effects occurred, the flow patterns were quite different depending on the concentration and temperature. |
url |
https://www.matec-conferences.org/articles/matecconf/pdf/2021/02/matecconf_apcche21_02002.pdf |
work_keys_str_mv |
AT saekitakashi flowcharacteristicsofdragreducingsurfactantsolutions AT kaideaya flowcharacteristicsofdragreducingsurfactantsolutions |
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