Applied Mathematics and Mechanics (English Edition) ›› 1988, Vol. 9 ›› Issue (7): 693-700.

• 论文 • 上一篇    下一篇

THE APPLICATION OF GENERALIZED VARIATIONAL PRINCIPLE IN FINITE ELEMENT-SEMIANALYTICAL METHOD

谭邦本   

  1. Hunan University, Changsha
  • 收稿日期:1985-03-16 出版日期:1988-07-18 发布日期:1988-07-18

THE APPLICATION OF GENERALIZED VARIATIONAL PRINCIPLE IN FINITE ELEMENT-SEMIANALYTICAL METHOD

Tan Bang-ben   

  1. Hunan University, Changsha
  • Received:1985-03-16 Online:1988-07-18 Published:1988-07-18

摘要: The method developed in this paper is inspired hy the viewpoint in ref. [1] that sufficient attention has not been paid to the value of the generalized varialional principle in dealing with the boundary conditions in the finite element method. This, method applies the generalized varialional principle and chooses the series constituted by spline junction multiplied by sinusoidal junction and added by polynomial as the approximate deflection of plates and shells. By taking the deflect ion problem of thin plate, it shows that this method can solve the coupling problem in the finite element-semianalytical method. Compared with the finite elementt method and finite stripe method, this method has much fewer unknown variables and higher precision. Hence, it proposes an effective way to solve this kind of engineering problems by minicomputer.

关键词: Duffing-van der Pol system, two parameters, singularity analysis

Abstract: The method developed in this paper is inspired hy the viewpoint in ref. [1] that sufficient attention has not been paid to the value of the generalized varialional principle in dealing with the boundary conditions in the finite element method. This, method applies the generalized varialional principle and chooses the series constituted by spline junction multiplied by sinusoidal junction and added by polynomial as the approximate deflection of plates and shells. By taking the deflect ion problem of thin plate, it shows that this method can solve the coupling problem in the finite element-semianalytical method. Compared with the finite elementt method and finite stripe method, this method has much fewer unknown variables and higher precision. Hence, it proposes an effective way to solve this kind of engineering problems by minicomputer.

Key words: Duffing-van der Pol system, two parameters, singularity analysis

APS Journals | CSTAM Journals | AMS Journals | EMS Journals | ASME Journals