Effect of nonlinear wave-current interaction on flow fields and hydrodynamic forces


Autoria(s): 王涛; 李家春
Data(s)

1997

Resumo

A fifth-order theory for solving the problem of interaction between Stokes waves and exponential profile currents is proposed. The calculated flow fields are compared with measurements. Then the errors caused by the linear superposition method and approximate theory are discussed. It is found that the total wave-current field consists of pure wave, pure current and interaction components. The shear current not only directly changes the flow field, but also indirectly does sx, by changing the wave parameters due to wave-current interaction. The present theory can predict the wave kinematics on shear currents satisfactorily. The linear superposition method may give rise to more than 40% loading error in extreme conditions. When the apparent wave period is used and the Wheeler stretching method is adopted to extrapolate the current, application of the approximate theory is the best.

Identificador

http://dspace.imech.ac.cn/handle/311007/39036

http://www.irgrid.ac.cn/handle/1471x/4864

Idioma(s)

英语

Fonte

Science In China Series A-Mathematics.1997,40(6):622-632

Palavras-Chave #Stokes Wave #Exponential Current #Nonlinear Interaction #Water-Waves
Tipo

期刊论文