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Spatio-temporal instability of two-layer liquid film at small Reynolds numbers

Spatio-temporal instability of two-layer liquid film at small Reynolds numbers
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摘要 The onset of instability with respect to the spatio-temporally growing disturbance in a viscosity-stratified two-layer liquid film flow is analyzed. The known results obtained from the temporal theory of instability show that the flow is unstable in the limit of zero Reynolds numbers. The present theory predicts the neutral stability in the same limit. The discrepancy is explained. Based on the mechanical energy equation, a new mechanism of instability is found. The new mechanism is associated with the convective nature of the disturbance that is not Galilei invariant. The onset of instability with respect to the spatio-temporally growing disturbance in a viscosity-stratified two-layer liquid film flow is analyzed. The known results obtained from the temporal theory of instability show that the flow is unstable in the limit of zero Reynolds numbers. The present theory predicts the neutral stability in the same limit. The discrepancy is explained. Based on the mechanical energy equation, a new mechanism of instability is found. The new mechanism is associated with the convective nature of the disturbance that is not Galilei invariant.
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2010年第1期1-12,共12页 应用数学和力学(英文版)
基金 supported by the National Natural Science Foundation of China (Nos. 10702038 and 10772107) the National Science Foundation of USA (No. CTS-0138057) the Shanghai Leading Academic Discipline Project (No. Y0103)
关键词 flow instability film coating energy budget low Reynolds number Galilei invariant flow instability, film coating, energy budget, low Reynolds number, Galilei invariant
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