Applied Mathematics and Mechanics (English Edition) ›› 1990, Vol. 11 ›› Issue (2): 117-124.

• 论文 • 上一篇    下一篇

EFFECTS OF BOTTOM TOPOGRAPHY ON THE STANDING WAVES IN CIRCULAR BASINS

马云丽, 李家春   

  1. Institute of Mechanics, Academia Sinica, Beijing
  • 收稿日期:1988-10-31 出版日期:1990-02-18 发布日期:1990-02-18

EFFECTS OF BOTTOM TOPOGRAPHY ON THE STANDING WAVES IN CIRCULAR BASINS

Ma Yun-li, Li Jia-chun   

  1. Institute of Mechanics, Academia Sinica, Beijing
  • Received:1988-10-31 Online:1990-02-18 Published:1990-02-18

摘要: Standing waves in the cylinder hasins with inhomogeneous bottom are considered in this paper.We assume that the inviscid, incompressible fluid is in irrotational undulatory motion.For convenience sake, cylindrical coordinates are chosen.The velocitv potentials, the wave profiles and the modified frequencies are determined (to the third order) as power series in terms of the amplitude divided by the wavelength.Axisymmetrical analytical solutions are worked out.When ω1=0, the second order frequency are gained.As an example, we assume that cylinder bottom is an axisymmetricat paraboloid.We find out that the uneven bottom has influences on standing waves.In the end.we go into detail on geometric factors.

关键词: vortex method, vortex merging, particle motion, particle trail

Abstract: Standing waves in the cylinder hasins with inhomogeneous bottom are considered in this paper.We assume that the inviscid, incompressible fluid is in irrotational undulatory motion.For convenience sake, cylindrical coordinates are chosen.The velocitv potentials, the wave profiles and the modified frequencies are determined (to the third order) as power series in terms of the amplitude divided by the wavelength.Axisymmetrical analytical solutions are worked out.When ω1=0, the second order frequency are gained.As an example, we assume that cylinder bottom is an axisymmetricat paraboloid.We find out that the uneven bottom has influences on standing waves.In the end.we go into detail on geometric factors.

Key words: vortex method, vortex merging, particle motion, particle trail

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