Surfactant Drag Reduction Caused by a Cationic Surfactant with Excess Addition of Counter-ions
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概要
- 論文の詳細を見る
Surfactant drag reduction is a promising technology to reduce the pumping power of district heating–cooling systems. Many investigations have been reported to give a clear prospect of the drag-reducing phenomenon. However, the mechanism of surfactant drag reduction and the microstructure of surfactant micelles are still left unknown. This study aims to provide an experimental evidence of the effect of counter-ions on the micelle structure and the surfactant drag reduction in a pipe flow. The present authors have been investigating the surfactant drag reduction with a cationic surfactant with suitable counter-ions (sodium salicylate). The effect of the molar ratio of the counter-ion to the cationic surfactant is discussed using the experimental results on the drag reduction in a turbulent pipe flow, on the micelle size and on the shear thinning–thickening viscosity. These experimental results suggest that a new drag-reducing state exists at very high molar ratios of the counter-ion to the surfactant. This new state gives a remarkable drag reduction, but shows very weak viscoelasticity. The optimum molar ratio to cause a strong viscoelasticity is (surfactant):(counter-ion) = 1:1.5, but at higher molar ratios, the elongational viscosity decreases, while high drag reduction effectiveness is kept. The micelle structure could be changed at higher counter-ion molar ratio, but this new structure may also be effective for drag reduction.
- 社団法人 化学工学会の論文
- 2004-10-01
著者
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鈴木 洋
神戸大学大学院工学研究科応用化学専攻
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Usui Hiromoto
Department of Chemical Science and Engineering, Kobe University
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Suzuki Hiroshi
Department of Engineering and Applied Science, Faculty of Science and Technology, Sophia University
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薄井 洋基
神戸大学
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KAMADA Toshimitsu
Department of Chemical Science and Engineering, Kobe University
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Usui Hiromoto
Dep. Of Chemical Sci. And Engineering Kobe Univ.
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Usui H
Yamaguchi Univ. Ube Jpn
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薄井 洋基
神戸大
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薄井 洋基
Dep. Of Chemical Sci. And Engineering Kobe Univ.
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Kamada Toshimitsu
Department Of Chemical Science And Engineering Kobe University
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鈴木 洋
神大院工
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Suzuki Hiroshi
Department Of Allergy And Immunology National Research Institute For Child Health & Development
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Usui Hiromoto
Department Of Applied Chemistry And Chemical Engineering Yamaguchi University
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