Behavior of the Gas-Liquid Interface in a Horizontal Tube after the Step Change of Air Flow

We studied the behavior of the air-water interface in a horizontal tube caused by the step change of air flow above still water. As to the critical condition of wave generation, the experimental results are well explained by the theory of Kelvin-Helmholtz instability. This tendency holds true also i...

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Published inNihon Kikai Gakkai rombunshuu. B hen Vol. 52; no. 476; pp. 1872 - 1877
Main Authors SAITOH, Shizuo, MAEKAWA, Noriyuki, HIHARA, Eiji, SAITOH, Takamoto
Format Journal Article
LanguageEnglish
Japanese
Published The Japan Society of Mechanical Engineers 1986
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Abstract We studied the behavior of the air-water interface in a horizontal tube caused by the step change of air flow above still water. As to the critical condition of wave generation, the experimental results are well explained by the theory of Kelvin-Helmholtz instability. This tendency holds true also in the case of different surface tension. The lower limit of air velocity for slugging in a short time (1.75 sec) after commencement of the flow is about 3 m/s greater than the Wallis' results regarding the transition from the steady wavy flow.
AbstractList The authors studied the behavior of the air-water interface in a horizontal tube caused by the step change of air flow above still water. As to the critical condition of wave generation, the experimental results are well explained by the theory of Kelvin-Helmholtz instability. This tendency holds true also in the case of different surface tension. The lower limit of air velocity for slugging in a short time (1.75 sec) after commencement of the flow is about 3 m/s greater than the Wallis' results regarding the transition from the steady wavy flow.
We studied the behavior of the air-water interface in a horizontal tube caused by the step change of air flow above still water. As to the critical condition of wave generation, the experimental results are well explained by the theory of Kelvin-Helmholtz instability. This tendency holds true also in the case of different surface tension. The lower limit of air velocity for slugging in a short time (1.75 sec) after commencement of the flow is about 3 m/s greater than the Wallis' results regarding the transition from the steady wavy flow.
Author SAITOH, Takamoto
HIHARA, Eiji
MAEKAWA, Noriyuki
SAITOH, Shizuo
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References (2) Taitel, Y. and Dukler, A.E., AIChE J., 22-1 (1976), 47
(8) Sakaguchi, T., et al, ASME Paper, 73-WA/HT-21
(9) Taitel, Y., et al, AIChE J., 24-5 (1978), 920
(1) Wallis, W.B. and Dobson, J.E., Int. J. Multiphase Flow, 1 (1973), 173
(12) Jordan, D.P., Advances in Heat Transfer, 5 (1968), 55
(5) Mishima, K. and Ishii, M., Trans. ASME, J. Fluid Eng., 102-4 (1980), 441
(6) Hihara, E. and Saito, T., ASME/JSME Thermal Eng. Joit Conference, (1983), 19
(3) 飛原,斎藤,機論,49-443,B(昭58),1440
(4) Kordyban, E., Int. J. Multiphase Flow, 3-6 (1977), 603
(11) Lamb, H., Hydtodynamics. (1924), 341
(10) Thorpe, S.A., J. Fluid Mech., 39-1 (1969), 25
(7) 田中,弓倉,冷凍,55-633(1980),5
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Snippet We studied the behavior of the air-water interface in a horizontal tube caused by the step change of air flow above still water. As to the critical condition...
The authors studied the behavior of the air-water interface in a horizontal tube caused by the step change of air flow above still water. As to the critical...
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SubjectTerms Critical Wavelength
multiphase flow
stability
surface properties
tubes
two phase flow
Title Behavior of the Gas-Liquid Interface in a Horizontal Tube after the Step Change of Air Flow
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