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尤云祥 徐杰 魏岗 卢东强. 连续分层流体中垂直薄板的水动力特性[J]. 力学学报, 2007, 23(3): 297-310. DOI: 10.6052/0459-1879-2007-3-2005-196
引用本文: 尤云祥 徐杰 魏岗 卢东强. 连续分层流体中垂直薄板的水动力特性[J]. 力学学报, 2007, 23(3): 297-310. DOI: 10.6052/0459-1879-2007-3-2005-196
Yunxiaing You, Jie Xu, Gang Wei, Dongqiang Lu. Hydrodynamic characteristics of a vertical thin barrier in a continuously stratified fluid[J]. Chinese Journal of Theoretical and Applied Mechanics, 2007, 23(3): 297-310. DOI: 10.6052/0459-1879-2007-3-2005-196
Citation: Yunxiaing You, Jie Xu, Gang Wei, Dongqiang Lu. Hydrodynamic characteristics of a vertical thin barrier in a continuously stratified fluid[J]. Chinese Journal of Theoretical and Applied Mechanics, 2007, 23(3): 297-310. DOI: 10.6052/0459-1879-2007-3-2005-196

连续分层流体中垂直薄板的水动力特性

Hydrodynamic characteristics of a vertical thin barrier in a continuously stratified fluid

  • 摘要: 研究了在线性连续分层流体中水波与半潜式刚性垂直薄板相互作用的问题. 在Boussinesq近似下,基于分离变量法,导出了具有自由面的平面前进波的色散关系,建立了半潜式刚性垂直薄板的反射与透射能量、水平波浪力的计算方法. 对给定的频率,当它大于浮力频率时,流场中只有一种模态的平面前进波,当它小于浮力频率时,流场中有无数多个模态的平面前进波,并证明了对每一种模态的入射波,其它每个模态水波的反射与透射能量是相等的. 对水面漂浮和座底半潜式薄板的反射与透射能量,以及作用在薄板上的水平波浪力进行了数值计算分析,表明了流体的线性连续分层效应对这些水动力的影响是不可忽视的. 特别地,在入射波频率小于浮力频率时,与第1模态入射波的能量转化量及其对薄板产生的水平波浪力相比,其它模态入射波的能量转化量及其对薄板产生的水平波浪力都要大得多.

     

    Abstract: This paper discusses the interaction of water waves with a verticalthin barrier in a continuously stratified fluid. Under the Boussinesqapproximation, the dispersion relations are obtained for planemonochromatic waves in a continuously stratified fluid, and the theoreticalsolutions are obtained by the eigenfunction expansion for the reflectionand transmission energies, as well as the exciting forces on the barrier dueto incident waves. For a fixed frequency \omega , when \omega >N(N being the buoyancy frequency), there is only a monochromatic wavepattern with one mode. When \omega < N, there are monochromatic wavepatterns with infinite modes, and it is shown that for the incident wave ofeach mode, the energies of the reflection and transmission waves of anyother mode are equal. The reflection and transmission energies, as well asthe exciting forces on the barrier due to incident waves are computed fortwo types of structures: a surface-piercing barrier and abottom-touched one, respectively. The results indicate that the densitystratification can have a significant effect on the hydrodynamic characteristicsof the barrier over a wide range of frequencies. In particular, when \omega< N, the transferred energies and the exciting forces on the barrier due toincident waves of the first mode are much less than those due to incidentwaves of other modes.

     

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