Applied Mathematics and Mechanics (English Edition) ›› 1985, Vol. 6 ›› Issue (11): 1083-1096.

• 论文 • 上一篇    下一篇

NONLINEAR KELVIN-HELMHOLTZ INSTABILITY

陈乐山   

  1. Institute of Mechanics, Academia Sinica, Beijing
  • 收稿日期:1984-08-15 出版日期:1985-11-18 发布日期:1985-11-18

NONLINEAR KELVIN-HELMHOLTZ INSTABILITY

Chen Le-shan   

  1. Institute of Mechanics, Academia Sinica, Beijing
  • Received:1984-08-15 Online:1985-11-18 Published:1985-11-18

摘要: A non-linear analysis is presented with derivative expansion method for the inter facial stability of a liquid film adjacent to a subsonic gas flow under the influence of body force and surface tension. The non-linear Rayleigh-Taylor instability is included as a special case. The gas and liquid are considered to be inviscid. Though Nayfeh (1971) gave consideration into this case, there is something omitted in his third-order equation (e.g. p. 213 expression (229)) and inconsistent with his solutions (e.g. the first-order solution (2.31) does not satisfy his initial conditions (2.20)). Besides, in this paper, our solution near the cut-off wave number is extended to include the case of travelling waves and a new conclusion is drawn.

关键词: external force of environment, crop growth, dynamic model, numerical simulation

Abstract: A non-linear analysis is presented with derivative expansion method for the inter facial stability of a liquid film adjacent to a subsonic gas flow under the influence of body force and surface tension. The non-linear Rayleigh-Taylor instability is included as a special case. The gas and liquid are considered to be inviscid. Though Nayfeh (1971) gave consideration into this case, there is something omitted in his third-order equation (e.g. p. 213 expression (229)) and inconsistent with his solutions (e.g. the first-order solution (2.31) does not satisfy his initial conditions (2.20)). Besides, in this paper, our solution near the cut-off wave number is extended to include the case of travelling waves and a new conclusion is drawn.

Key words: external force of environment, crop growth, dynamic model, numerical simulation

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